subjectId
Discipline Name
Subject Name
Coordinators
Type
Institute
Content
105101001
Civil Engineering
Advanced Geotechnical Engineering
Dr. B.V.S. Viswanadham
Video
IIT Bombay
Select
Lecture 1
Lecture 2
Lecture 3
Lecture 4
Lecture 5
Lecture 6
Lecture 7
Lecture 8
Lecture 9
Lecture 10
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 25
Lecture 26
Lecture 27
Lecture 28
Lecture 29
Lecture 30
Lecture 31
Lecture 32
Lecture 33
Lecture 34
Lecture 35
Lecture 36
Lecture 37
Lecture 38
Lecture 39
Lecture 40
Lecture 41
Lecture 42
Lecture 43
Lecture 44
Lecture 45
Lecture 46
Lecture 47
Lecture 48
Lecture 49
Lecture 50
Lecture 51
Lecture 52
Lecture 53
Lecture 54
Lecture 55
Lecture 56
Lecture 57
Lecture 58
Lecture 59
Lecture 60
105101002
Civil Engineering
Advanced Hydrology
Dr. Subhankar Karmakar
Web
IIT Bombay
Select
Lecture 1: Weather and hydrologic cycle
Lecture 2: Weather and hydrologic cycle (contd.)
Lecture 3: Hydrologic losses
Lecture 1: Philosophy of mathematical models of watershed hydrology
Lecture 2: Philosophy of mathematical models of watershed hydrology (contd.)
Lecture 1: Watershed and rainfall-runoff relationship
Lecture 2: Watershed and rainfall-runoff relationship (contd.)
Lecture 3: Hydrograph analysis
Lecture 4: Introduction to unit hydrograph
Lecture 5: Derivation of S-curve and discrete convolution equations
Lecture 6: Synthetic unit hydrograph
Lecture 1: Kinematic wave method
Lecture 2: Kinematic overland flow routing
Lecture 3: Kinematic channel modeling
Lecture 1: Introduction to flood routing
Lecture 2: Level pool routing and Modified Pul’s method
Lecture 3: Channel routing methods
Lecture 4: Hydraulic routing
Lecture 1: Reynolds transport theorem and open channel flow
Lecture 2: Navier-Stokes and Saint Venant equations
Lecture 3: Derivation of momentum equation
Lecture 4: Derivation of momentum equation (contd.)
Lecture 5: Energy equation and numerical problems
Lecture 1: Introduction to probability distribution
Lecture 2: Statistical moments
Lecture 3: Measures of central tendency and dispersion
Lecture 4: Measures of symmetry and correlation
Lecture 5: Commonly used distributions in hydrology
Lecture 6: Goodness of fit tests
Lecture 7: Statistical parameter estimation
Lecture 1: Frequency analysis
Lecture 2: Markov process and Thomas Fierring model
Lecture 3: Markov chain
Lecture 4: Data generation
Lecture 5: Reliability analysis
Lecture 1: Introduction to hydrologic simulation modelling
Lecture 2: Steps in watershed modelling
Lecture 3: Major hydrologic models-HSPF, HEC and MIKE
Lecture 4: MIKE models
Lecture 5: Urban flood risk mapping using MOUSE, MIKE 21 and MIKE FLOOD
105101004
Civil Engineering
Introduction to Earthquake Engineering
Dr. R.S. Jangid
Web
IIT Bombay
Select
Chapter 1: Seismology
Chapter 2: Strong Motion and Estimation of Seismic Hazard
Chapter 3: Dynamics of Earthquake Analysis
Chapter 4: Response Spectrum Method
Chapter 5 : Response Analysis for Multi Support Earthquake Excitation
Chapter 6 : Seismic Soil-Structure Interaction
Chapter 7: Non-linear Seismic Response of Structures
Chapter 8 : Base Isolation for Earthquake-Resistant design
References
Appendix I
Appendix II
Appendix III
Appendix IV
Acknowledgement
105101005
Civil Engineering
Soil Dynamics
Dr. Deepankar Choudhury
Video
IIT Bombay
Select
L1-Introduction
L2-Degrees of Freedom, SDOF System, Types of Vibrations
L3-SDOF System, Types of Vibrations, Free Vibration
L4-Problems on Tortional Motion
L5-Damped Free Vibrations
L6-Damped Free Vibrations, Definition of Critical Damping and problems
L7-Decay of Motion
L8-Forced Vibrations, Dynamic Magnification Factor
L9-Maxwells Diagram of DMF, Discussion on Phase
L10-Transmissibility Ratio, Response to Arbitrary, Step and Pulse Excitations
L11-Response to Arbitrary, Step and Pulse Excitations, Response to Impact Load
L12-Vibration Isolation, Vibrations Measuring Instruments
L13-Solutions of Quiz Questions, Multi-Degree of Freedom (MDOF) Systems
L14-(MDOF) System : Equation of Motion, Longitudinal Waves in an Infinitely long rod
L15-3 Dimensional Wave Propagation, Waves in semi-infinite media, Rayleigh Wave
L16-Love Wave, Waves in layered medium, 3D case-Inclined wave, Earthquake Waves
L17-Earthquake Waves; P-waves, S-waves, 3 circle method, Estimation of Earthquake Epicentre
L18-Stresses in Soil Element, Field Tests, Seismic Reflection Test
L19-Seismic Refraction Test, SASW Test, Laboratory & Model Tests
L20-Centrifuge Tests Stress Strain Behavior of Cyclically Loaded Soils
L21-Estimation of Gmax, Modulus Reduction Curves, Variation of Damping Ratio, Cyclic Plate load Test
L22-Liquefaction, Preliminary sceening, Simplified Procedure for Liquefaction
L23-Cyclic Stress Ratio, Evaluation of CRR, Correction Factors, Corrections for SPT
L24-Becker Penetrometer Test (BPT), Cone Penetrometer Test (CPT), SPT v BPT, SASW Test
L25-Types of Machine Foundations, Methods of Analysis, Design of Machine Foundations as per IS:2974 (Part-1)-1969
L26-Tschebotarioff's
L27-Problem on Tschebotarioff's method contd., Mass-Spring-Dashpot (MSD) Model
L28-MSD Model- Yawing mode of Vibration, Use of MSD model for analysis
L29-Problems on Use of MSD Model for Analysis, Rocking mode of Vibrations
L30-Torsional Mode/Yawing Mode, Constant Force type excitation, EHS Theory
L31-EHS Theory, Vibrational Control
L32-Use of EHS Theory for analysis
L33-Use of EHS Theory for analysis II
L34-Liquefaction mitigation methods,Vibro Compaction,Densification Techniques
L35-Soil Improvement methods,Dynamic Compaction,Reinforcement Techniques
L36-Force-based Analysis,Dynamic analysis using MSD model
L37-Behaviour of Subgrade Soil below Rail Track
L38-Quiz
105101006
Civil Engineering
Structural Dynamics
Dr. P. Banerji
Video
IIT Bombay
Select
L1-Introduction
L2-Inverse Power Method
L3-Dynamics of SDOF Structure
L4-SDOF Response to Harmonic Loads
L5-Response of SDOF Structure to Harmonic Loading
L6-Response to Harmonic Loading
L7-Response to Harmonic Loading(continue..)
L8-Transmissibility & Base Isolation
L9-Dynamic Characteristics & Periodic Loading
L10-Pulse Loading
L11-Pulse Load Response Characteristics & Impulse Loading
L12-Frequency Domain Response Analysis
L13-Methods of Analysis for General Loading
L14-Numerical Analysis of Response of Single Degree of Freedom Structure & Time Domain Approaches
L15-Response Analysis of Single Degree of Freedom System for Earthquake Loads
L16-Earthquake Response Analysis for Single Degree of Freedom Structures
L17-Generalized Single Degree of Freedom Systems Equations of Motions
L18-Generalized Single Degree of Freedom Systems Equations of Motions
L19-Generalized Single Degree of Freedom Systems Equations of Motions
L20-Generalized Single Degree of Freedom Systems Equations of Motion & Free Vibrations
L21-Equations of Motion for Multi Degree of Freedom Structures
L22-Equations of Motion for Multi Degree of Freedom Systems
L23-Multi Degree of Freedom Structure Equations of Motions
L24-Multi Degree of Freedom Structure Equations of Motions & Free Vibration
L25-Free Vibration for Multi Degree of Freedom Structures
L26-Free Vibration for Multi Degree of Freedom Structures
L27-Practical Free Vibration Analysis
L28-Dynamic Response of Multi Degree of Freedom Systems
L29-Dynamic Response of Multi Degree of Freedom Structures
L30-Damping for Multi Degree of Freedom Structures
L31-Earthquake Response of Multi Degree of Freedom Structures
L32-Earthquake Response of Multi Degree of Freedom Structures
L33-Dynamic Analysis of Buildings
L34-Introduction to Dynamics of Continuous Systems
L35-Free Vibration Response of Continuous Systems
L36-Free Vibration & Dynamic Response of Continuous Systems
L37-Dynamic Response of Continuous Systems
L38-Examples for Dynamic Response of Continuous Systems
105101008
Civil Engineering
Traffic Engineering & Management
Dr. Tom V Mathew
Web
IIT Bombay
Select
Lecture 01 : Fundamental parameters of traffic flow
Lecture 02 : Fundamental relations of traffic flow
Lecture 03 : Traffic Stream Models
Lecture 04 : Moving observer method
Lecture 05 : Measurement at a point
Lecture 06 : Measurement over a Short Section
Lecture 07 : Measurement Along a Length of Road
Lecture 08 : Automated Traffic Measurement
Lecture 09 : Intrusive Technologies
Lecture 10 : Non-Intrusive Technologies
Lecture 11 : Travel Time Data Collection
Lecture 12 : Vehicle Arrival Models: Headway
Lecture 13 : Vehicle Arrival Models: Count
Lecture 14 : Car Following Models
Lecture 15 : Lane Changing Models
Lecture 16 : Microscopic Traffic Simulation
Lecture 17 : Traffic Flow Modeling Analogies
Lecture 18 : Cell Transmission Models
Lecture 19 : Traffic Progression Models
Lecture 20 : Discrete Simulation Models
Lecture 21 : Capacity and Level of Service LOS
Lecture 22 : Urban Streets
Lecture 23 : Multilane Highways
Lecture 24 : Freeway Operations
Lecture 25 : Ramp Metering
Lecture 26 : Corridor Analysis
Lecture 27 : Principles of Traffic Control
Lecture 28 : Traffic Signs
Lecture 29 : Road Markings
Lecture 30 : Uncontrolled Intersection
Lecture 31 : Channelization
Lecture 32 : Traffic Rotary
Lecture 33 : Grade Separated Intersection
Lecture 34 : Design Principles of Traffic Signal
Lecture 35 : Evaluation of a Traffic Signal: Delay Models
Lecture 36 : Design Principles of a Traffic Signal
Lecture 37 : Capacity and Los Analysis of a Signalized I/S
Lecture 38 : Coordinated Traffic Signal
Lecture 39 : Vehicle Actuated Signals
Lecture 40 : Area Traffic Control
Lecture 41 : Parking Studies
Lecture 42 : Accident Studies
Lecture 43 : Fuel Consumption and Emission Studies
Lecture 44 : Congestion Studies
Lecture 45 : Queuing Analysis
Lecture 46 : Toll Operation
Lecture 47 : Pedestrian Studies
Lecture 48 : Intelligent Transportation System - I
Lecture 49 : Intelligent Transportation System - II
Lecture 50 : Advanced ITS
105101010
Civil Engineering
Watershed Management
Dr. T.I. Eldho
Video
IIT Bombay
Select
L1-Introduction to Watershed Management
L2-Watershed Management & Stakeholder Analysis
L3-Watershed Management Policies
L4-Sustainable Watershed Management
L5-Agricultural Practices & Watershed Management
L6-Soil Erosion & Conservation
L7-Watershed Management in Arid Regions & Strategic Planning
L8-Integrated Water Resources Management
L9-Conjuctive Use of Water Resources
L10-Rainwater Harvesting System
L11-Rainwater Harvesting & Roof Catchment System
L12-Watershed Characteristics
L13-Watershed Delineation & Modeling
L14-Hydrologic Processes
L15-Watershed Modeling
L16-Hydrologic Modeling
L17-Numerical Watershed Modeling
L18-Subsurface & Groundwater Flows
L19-Social & Community Aspects of Watershed Management
L20-Socio-economy, Private Sector Participation & Gender Issues
L21-Integrated Development, Water Legislation & Implementation Issues
L22-GIS & Applications in Watershed Management
L23-Remote Sensing & Applications in Watershed Management
L24-Decision Support Systems & Applications in Watershed Management
L25-Integrated Watershed Modeling Using Numerical Methods, GIS & Remote Sensing
L26-Applications of Knowledge Based Models in Watershed Management
L27-Surface Water Quality & Pollution Issues
L28-Groundwater Pollution Problems & Transport Processes
L29-Water Quality Modeling
L30-Environmental Guidelines for Water Quality Management
L31-Storm Water Management
L32-Urban Drainage System
L33-Flood Routing
L34-Flood Control & Management
L35-Drought Assessment
L36-Drought Analysis
L37-Drought Mitigation
L38-Water Conservation
L39-Water Recycling
L40-Water Reclaimation & Reuse
105101082
Civil Engineering
Fluid Mechanics
Dr. T.I. Eldho
Video
IIT Bombay
Select
Fluid Mechanics
Fundamental Concepts of Fluid Flow & Fluid Statics
Fluid Statics
Fluid Statics
Fluid Statics
Kinematics of Fluid Flow
Kinematics of Fluid Flow
Kinematics of Fluid Flow
Kinematics of Fluid Flow
Kinematics of Fluid Flow
Kinematics & Dynamics of Fluid Flow
Dynamics of Fluid Flow
Dynamics of Fluid Flow
Dynamics of Fluid Flow
Dynamics of Fluid Flow
Dynamics of Fluid Flow
Laminar and Turbulent Flows
Laminar and Turbulent Flows
Laminar and Turbulent Flows
Laminar and Turbulent Flows
Laminar and Turbulent Flows
Laminar and Turbulent Flows
Dimensional Analysis
Dimensional Analysis
Dimensional Analysis
Navier-Stocks Equations and Applications
Navier-Stocks Equations and Applications
Navier-Stocks Equations and Applications
Navier-Stocks Equations and Applications
Boundary Layer Theory and Applications
Boundary Layer Theory and Applications
Boundary Layer Theory and Applications
Boundary Layer Theory and Applications
Boundary Layer Theory and Applications
Boundary Layer Theory and Applications
Pipe Flow Systems
Pipe Flow Systems
Pipe Flow Systems
Pipe Flow Systems
Pipe Flow Systems
Pipe Flow Systems
Pipe Flow Systems
105101083
Civil Engineering
Foundation Engineering
Dr. Deepankar Choudhury
Web
IIT Bombay
Select
Lecture -1 Planning for Subsurface Exploration
Lecture -2 Boring Methods of Exploration
Lecture -3 Soil samplings and samplers
Lecture -4 In-situ tests
Lecture -5 Geophysical Exploration
Problems & Solutions
Lecture -6 Introduction-Different Theories of Earth Pressure
Lecture -7 Earth Pressure Theories
Lecture -8 Development of Bearing Capacity Theory
Lecture -9 Development of Uplift Capacity
Lecture -10 Point of Application of Passive Earth Pressure
Problems & Solutions-Theory of Earth Pressure
Lecture -11 Introduction -Method of Analyses
Lecture -12 Limit Equilibrium
Lecture -13 Limit Analysis
Lecture -14 Methods of Characteristics
Lecture -15 Finite Element Method
Lecture -16 Different Types of Footings
Lecture -17 Bearing capacity
Lecture -18 Structural designs of column and footing
Lecture -19 Settlement
Lecture -20 Introduction-Design of Deep Foundations
Lecture -21 Types of pile load test
Lecture -22 Ultimate pile capacity
Lecture -23 Piles In Sand
Lecture -24 Under Reamed Pile
Lecture -25 Pile Groups
Lecture -26 Introduction -Design of Retaining Structures
Lecture -27 Cantilever sheet pile walls
Lecture -28 Anchored sheet pile walls
Lecture -29 Braced cuts
Lecture -30 Dewatering
Problems & Solutions of Retaiting Structures
Lecture -31 Basics of soil dynamics
Lecture -32 Machine foundation
Problems & Solutions of Design of Machine Foundations
Lecture -33 Introduction-Foundations in difficult ground
Lecture -34 Collapsing Soils
Lecture -35 Foundations – Design Methodologies
Lecture -36 Improvement methods
Problems & Solutions of Foundations in difficult ground
References
105101084
Civil Engineering
Soil Mechanics
Dr. B.V.S. Viswanadham
Video
IIT Bombay
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Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Compaction of Soils - I
Soil Mechanics
Soil Mechanics
Compaction of Soils - IV
Compaction of Soils - V
Compaction of Soils - VI
Effective Stress - I
Effective Stress - II
Effective Stress - III
Flow of water through soils - I
Flow of water through soils - II
Flow of water through soils - III
Flow of water through soils - IV
Flow of water through soils - V
Flow of water through soils - VI
Flow of water through soils - VII
Flow of water through soils - VIII
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
Soil Mechanics
105101085
Civil Engineering
Structural Analysis I
Dr. R.S. Jangid
Web
IIT Bombay
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Lecture -1 Introduction
Lecture -2 Equilibrium
Lecture -3 Constitutive Relations and Compatibility Conditions
Lecture -4 Static Indeterminacy of Structures
Lecture -5 Symmetry and Antisymmetry
Lecture -6 Tutorial Problems
Lecture -1 Internal Force on a System
Lecture -2 Internal Forces Acting on Typical Structural Members
Lecture -3 Axial Force, Shear Force and Bending Moment
Lecture -4 Sign Convention and Notations for Internal Forces
Lecture -5 Obtaining Internal Forces in a System: General Procedur
Lecture -6 Internal Force Diagrams
Lecture -7 Internal Force as a Function of x
Lecture -8 Internal Force Diagrams for Various Systems
Lecture -9 Example for Trusses
Lecture -10 Tutorial Problemsrelated to this module
Lecture -1 Introduction of Cables
Lecture -2 The General Cable Theorem
Lecture -3 Application of the General Cable Theorem for Distribute
Lecture -4 Examples
Lecture -5 Tutorial Problems and Answers
Lecture -1 Moment Area Method
Lecture -2 Conjugate Beam Method
Lecture -3 Principle of Virtual Work
Lecture -4 Strain Energy Method
Lecture -5 Bending Deflection Due to Temperature Variation
Lecture -6 Maxwell-Betti Law of Reciprocal Deflections
Lecture -7 Tutorial problems of this module
Lecture -1 Analysis of Statically Indeterminate Beams
Lecture -2 The Force Method
Lecture -3 Analysis of Statically Indeterminate Structures By Ener
Lecture -4 Three Moment Equation
Lecture -5 Tutotial Problems
Lecture -1 Introduction: Variable Loadings
Lecture -2 Construction of Influence Lines using Equilibrium Metho
Lecture -3 Use of Influence Lines
Lecture -4 Using Influence Lines for Uniformly Distributed Load
Lecture -5 Müller-Breslau Principle
Lecture -6 Tutorial Problems related to this module
105101086
Civil Engineering
Structural Analysis II
Dr. P. Banerji
Video
IIT Bombay
Select
Lecture 1
Lecture 2
Lecture 3
Lecture 4
Lecture 5
Lecture 6
Lecture 7
Lecture 8
Lecture 9
Lecture 10
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 25
Lecture 26
Lecture 27
Lecture 28
Lecture 29
Lecture 30
Lecture 31
Lecture 32
Lecture 33
Lecture 34
Lecture 35
Lecture 36
Lecture 37
Lecture 38
Lecture 39
Lecture 40
105101087
Civil Engineering
Transportation Engineering I
Dr. Tom V Mathew
Web
IIT Bombay
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Lecture-1 Introduction to transportation engineering
Lecture-2 Introduction to Highway Engineering
Lecture-3 Role of transportation in society
Lecture-4 Factors affecting transportation
Lecture-5 Travel demand modelling
Lecture-6 Data collection
Lecture-7 Trip generation
Lecture-8 Trip distribution
Lecture-9 Modal split
Lecture-10 Traffic Assignment
Lecture-11 Introduction to geometric design
Lecture-12 Cross sectional elements
Lecture-13 Sight distance
Lecture-14 Horizontal alignment
Lecture-15 Horizontal alignment II
Lecture-16 Horizontal alignment III
Lecture-17 Vertical alignment I
Lecture-18 Vertical alignment II
Lecture-19 Introduction to Pavement design
Lecture-20 Factors affecting pavement design
Lecture-21 Pavement materials:Soil
Lecture-22 Pavement materials:Aggregates
Lecture-23 Pavement materials:Bitumen
Lecture-24 Bituminous mix design
Lecture-25 Dry mix design
Lecture-26 Marshal mix design
Lecture-27 Flexible pavement design
Lecture-28 IRC method of design of flexible pavements
Lecture-29 Rigid pavements
Lecture-30 Fundamental parameters of traffic flow
Lecture-31 Fundamental relations of traffic flow
Lecture-32 Traffic data collection
Lecture-33 Traffic stream models
Lecture-34 Microscopic traffic flow modelling
Lecture-35 Capacity and level of service
Lecture-36 Traffic signs
Lecture-37 Road markings
Lecture-38 Parking
Lecture-39 Traffic intersections
Lecture-40 Traffic rotaries
Lecture-41 Traffic signal design-I
Lecture-42 Traffic signal design-II
105101134
Civil Engineering
Geotechnical Earthquake Engineering
Dr. Deepankar Choudhury
Video
IIT Bombay
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L1-Introduction to Geotechnical Earthquake Engineering
L2-Introduction to Geotechnical Earthquake Engineering (continued)
L3-Basics of Vibration Theory
L4-Engineering Seismology part -I
L5-Engineering Seismology (continued) part -II
L6-Engineering Seismology (continued) part -III
L7-Engineering Seismology (continued) part -IV
L8-Engineering Seismology (continued) part -V
L9-Engineering Seismology (continued) part –VI
L10-Strong Ground Motion
L11-Strong Ground Motion (continued) part –II
L12-Strong Ground Motion (continued) part –III
L13-Strong Ground Motion (continued) part –IV
L14-Strong Ground Motion (continued) part –V
L15-Strong Ground Motion (continued) part –VI
L16-Strong Ground Motion (continued) part –VII
L17-Wave Propagation
L18-Wave Propagation (continued) part –II
L19-Wave Propagation (continued) part –III
L20-Wave Propagation (continued) part –IV
L21-Dynamic Soil Properties
L22-Dynamic Soil Properties (continued) Part -II
L23-Seismic Hazard Analysis
L24-Seismic Hazard Analysis (continued) Part -II
L25-Seismic Hazard Analysis (continued) part –III
L26-Seismic Hazard Analysis (continued) part –IV
L27-Seismic Hazard Analysis (continued) part –V
L28-Seismic Hazard Analysis (continued) part –VI
L29-Seismic Hazard Analysis (continued) part –VII
L30-Seismic Hazard Analysis (continued) part –VIII
L31-Site Response Analysis
L32-Site Response Analysis (continued) part –II
L33-Site Response Analysis (continued) part –III
L34-Seismic Analysis and Design of Various Geotechnical Structures
L35-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –II
L36-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –III
L37-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –IV
L38-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –V
L39-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –VI
L40-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –VII
L41-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –VIII
L42-Quiz
L43-Seismic Analysis and Design of Various Geotechnical Structures (continued) part –IX
105101143
Civil Engineering
Geosynthetics Engineering: In Theory and Practice
Prof. J. N. Mandal
Video
IIT Bombay
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Lecture 1 : Introduction
Lecture 2 : Introduction to Reinforced Earth
Lecture 3 : Introduction to Reinforced Earth
Lecture 4 : Introduction to Reinforced Earth
Lecture 5 : Introduction to Reinforced Earth.
Lecture 6 : An Overview of Gosynthetics
Lecture 7 : An Overview Geosynthetics Part II
Lecture 8 : An Overview of Geosynthetics Part III
Lecture 9 : An Overview of Gosynthetics
Lecture 10 : Geosynthetic Properties and Test Methods
Lecture 11 : Geosynthetic Properties and Test Methods
Lecture 12 : Geosynthetic Properties and Test Methods
Lecture 13 : Geosynthetic Properties and Test Methods
Lecture 14 : Geosynthetic Properties and Test Methods
Lecture 15 : Geosynthetic in Filtration, Drainage and Erosion Control
Lecture 16 : Geosynthetic in Filtration, Drainage and Erosion Control
Lecture 17 : Geosynthetic in Filtration, Drainage and Erosion Control
Lecture 18 : Geosynthetic in Filtration, Drainage and Erosion Control
Lecture 19 : Geosynthetic in Filtration, Drainage and Erosion Control
Lecture 20 : Geosynthetic in pavements
Lecture 21 : Geosynthetic in pavements
Lecture 22 : Geosynthetic in pavements
Lecture 23 : Geosynthetic in pavements
Lecture 24 : Geosynthetic in pavements
Lecture 25 : Geosynthetic in pavements
Lecture 26 : Geosynthetics for Reinforced Soil Retaining Walls
Lecture 27 : Geosynthetics for Reinforced Soil Retaining Walls
Lecture 28 : Geosynthetics for Reinfroced Soil Retaining Walls
Lecture 29 : Geosynthetics for Reinforced Soil Retaining Walls
Lecture 30: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 31: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 32: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 33: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 34: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 35: Geosynthetics for Reinforced Soil Retaining Walls
Lecture 36 : Geosynthetic for Steep Slopes
Lecture 37 : Geosynthetic for Steep Slopes
Lecture 38 : Geosynthetic for Steep Slopes
Lecture 39 : Geosynthetic for Steep Slopes
Lecture 40 : Geosynthetic for Embankments on Soft Foundations
Lecture 41 : Geosynthetic for Embankments on Soft Foundations
Lecture 42 : Geosynthetic for Embankments on Soft Foundations
Lecture 43 : Geosynthetic for Ground Improvement
Lecture 44 : Geosynthetic for Ground Improvement
Lecture 45 : Geosynthetic for Ground Improvement
Lecture 46 : Geosynthetic for Ground Improvement
Lecture 47 : Geosynthetic for Ground Improvement
Lecture 48 : Geosynthetic for Ground Improvement
Lecture 49 : Geosynthetic for Ground Improvement
Lecture 50 : Geosynthetic for Improvement in Bearing Capacity
Lecture 51 : Designing with Geotextile Tube
Lecture 52 : Designing with Geotextile Tube
Lecture 53 : Design of Geosynthetic for Landfills
Lecture 54 : Design of Geosynthetic for Landfills
Lecture 55 : Design of Geosynthetic for Landfill
Lecture 56 : Design of Geosynthetic for Landfill
Lecture 57 : Design of Geosynthetic for Landfill
Lecture 58 : Designing With Geofoam
Lecture 59 : Designing With Geofoam
Lecture 60 : Designing With Geofoam
Lecture 61 : Designing With Geofoam
Lecture 62 : Designing With Geofoam
Lecture 63 : Designing With Geofoam
105101160
Civil Engineering
NOC:Geotechnical engineering laboratory
Prof. J. N. Mandal
Video
IIT Bombay
Select
Lecture 1: Soil Processing
Lecture 2: Specific Gravity and Field Density
Lecture 3: Field Density
Lecture 4: Grain Size Analysis
Lecture 5: Grain Size Analysis (contd..)
Lecture 6: Grain Size Analysis (contd..)
Lecture 7: Atterberg Limit
Lecture 8: Compaction
Lecture 9: Compaction (contd..)
Lecture 10: Compaction (contd..)
Lecture 11: Compaction and Permeability
Lecture 12: Permeability
Lecture 13: Permeability and Shear Strength
Lecture 14: Shear Strength
Lecture 15: Shear Strength (contd..)
Lecture 16: Shear Strength (contd..)
Lecture 17: Shear Strength (contd..)
Lecture 18: Shear Strength (contd..)
Lecture 19: Shear Strength (contd..)
Lecture 20: Consolidation
Lecture 21: Consolidation (contd..)
Lecture 22: Consolidation (contd..)
105102012
Civil Engineering
Concrete Technology
Dr. B. Bhattacharjee
Video
IIT Delhi
Select
Production and Composition
Structure and Hydration
Structure and Hydration.
Properties and Tests
Types and Use
Aggregates (Size , Shape)
Packing, FM,SM
Properties
Chemical Admixtures
Chemical Admixtures.
Mineral Admixtures
Mineral Admixtures.
Mineral Admixtures..
Mix Proportioning of Concrete: General Principles
Mix design of Concrete: General and IS Method
Mix Design of Concrete:Is Example and British (DOE) Method
Mix Design of concrete: ACI 211 Method
Mix Design of concrete:Packing Density, Rheology
Batching and Mixing of concrete: General Principles
RMC and Transporting Concrete
Workability and Pumping of Concrete
Compaction and Curing Concrete
Strength of Concrete: Factors Affecting
Strength of Concrete: Aggregate Contribution
Strength of Concrete: Factors Affecting Test Results
Mechanical Properties of Concrete:Elastic Moduls, Poision'Ratio,Fatigue, Impact
Creep of Concrete
Creep and Shrinkage of Concrete
Shrinkage of Concrete
Shrinkage of Concrete.
Fundamental Concepts, Degradation Process, Attacks
Frost Action and Rebar Corrosion
Carbonation and Chloride Affect
Rebar Corrosion
Rebar Corrosion and General Strateggy
High Strength Concrete
High Strength Matrics and SCC
Self Compacting Concrete
Fiber Concrete
Fiber and Roller Compacted Concrete
Special Concrete and Sustainability
105102015
Civil Engineering
G.I.S in Civil Engineering
Dr. A.K. Gosain
Web
IIT Delhi
Select
Introduction to GIS
History of GIS
Early development in GIS
Applications of GIS
Introduction
Web GIS
OGC and Web Services
Local Methods of Interpolation
Global Methods of Interpolation
Interpolation
Distribution Map
Toposheet Indexing
Data Presentation
Map Desigining
Map Layout
introduction:Cartographic Principles
Raster data spatial analysis
Network Analysis
Vector Operations and Analysis- Multiple Theme
Vector Operations and Analysis- Single Theme
introduction: Spatial analysis
Data Editing
Secondary Data
Primary Data
Geodatabase and Metadata
Raster Data Structure
Vector Data Structure
GIS Data Model
introduction: Data Models and Data Structures
Normalization
Database Structure Models
Entity Relationship Model
Database Management System
Data Storage
introduction: Spatial DBMS
Georeferencing
Transformation
Map Projection
Coordinate System
Understanding Earth
Map and Globe
Type of Maps
Map Scale
History of Maps
intorduction :Map and Map Scale
Lab Exercise: introduction of GIS
Lab Exercise : Georeferencing and Projection
Lab Exercise: Spatial DBMS
Lab Exercise: Data models and Data structures
Lab Exercise: Spatial data input and editing
Lab Exercise: Spatial analysis
Lab Exercise: Cartographic principles and design
Lab Exercise: Interpolation
105102016
Civil Engineering
Seismic Analysis of Structures
Dr. Ashok Gupta
Video
IIT Delhi
Select
Seismology
Seismology Contd.
Seismology Contd..
Seismology Contd...
Seismic Inputs
Seismic Inputs Contd.
Seismic Inputs Contd..
Seismic Inputs Contd....
Response Analysis for Specified Ground Motion
Response Analysis for Specified Ground Motion Contd.
Response Analysis for Specified Ground Motion Contd..
Response Analysis for Specified Ground Motion Contd....
Response Analysis for Specified Ground Motion Contd.....
Response Analysis for Specified Ground Motion Contd......
Frequency Domain Spectral Analysis
Frequency Domain Spectral Analysis.
Frequency Domain Spectral Analysis Contd...
Frequency Domain Spectral Analysis contd....
Frequency Domain Spectral Analysis contd.....
Response Spectrum Method of Analysis
Response Spectrum Method of Analysis.
Response Spectrum Method of Analysis Contd.
Response Spectrum Method of Analysis Contd...
Response Spectrum Method of Analysis Contd....
Inelastic Seismic Response of Structures
Inelastic Seismic Response of Structures Contd.
Inelastic Seismic Response of Structures Contd...
Inelastic Seismic Response of Structures Contd.....
Inelastic Seismic Response of Structures Contd......
Inelastic Seismic Response of Structures Contd.......
105102088
Civil Engineering
Civil Engineering - Building materials and Construction
Dr. B. Bhattacharjee
Video
IIT Delhi
Select
Functions Of Buildings
Role Of Material In Construction
Concrete:Material
Concrete Production Contd..
Concrete Production Contd.
Concrete:Production Pumping, Placing
Concrete:Production Curing
Cement: Hydration
Cement and Cementitious Material
Fresh Concrete
Fresh Concrete: Role of Mix Parameters
Fresh Concrete : Role of Admixtures
Fresh Concrete : Segregation Bleeding
Strength of Concrete I
Strength of Concrete II
Strength of Concrete III
Mechanical Properties of Concrete I
Mechanical Properties of Concrete II
Strength of Concrete : Non Destructive
Durability of Concrete I
Durability of Concrete II
Durability of Concrete III
Cement Aggregate and Water Selection
Mix Design of Concrete
Mix Design Of concrete IS Method
Mix Design Of Concrete: British
Masonry : Materials
Masonry : Walls
Masonry : Walls; Resistance I
Masonry : Walls; Resistance
Walls : Functional Performances
Walls : Defects and Durability
Metals Fundamentals
Metals and Iron Systems
Steel: Uses in Construction
Steel : Uses in Rebar
Polymer in Construction
Polymer in Construction : Uses
Glass and Timber : Glass
Glass and Timber: Timber
Roof and Floor Construction
105102089
Civil Engineering
Environmental Air Pollution
Prof. Mukesh Khare
Web
IIT Delhi
Select
History of air pollution
Air pollution: Definition & Types
Air pollutant
Ambient Air pollution Monitoring
Stack Monitoring
Experimental Analysis
Air pollution effects
Air pollution control & its principles
Air pollution meterology
Fundamentals of air quality modeling
Indoor air pollution: Sources, types & effects
Global warming
Photo chemical Smog
Ozone problem
Acid rain
105102090
Civil Engineering
Mechanics of Solids
Prof. Y. Nath
Web
IIT Delhi
Select
Introduction
Equilibrium
Transformation
Equilibrium 2
General Transformation
Analysis of Stresses
General Transformation 2
General Transformation 3
Analysis of Strain
Hooke's law
Uniaxial
Pure Torsion
Spring Closed Coil
Pure bending of thin beam
Engg Problem definition
Composite Beam
Bucking
Combined stresses
Energy Method
Theories of failure
105102159
Civil Engineering
Water Management
Dr. A.K. Gosain
Video
IIT Delhi
Select
Drip Irrigation System - IV
Drip Irrigation System - III
Drip Irrigation System - II
Drip Irrigation System - I
Sprinkler Irrigation System - VIII
Sprinkler Irrigation System - VII
Sprinkler Irrigation System - VI
Sprinkler Irrigation System - V
Sprinkler Irrigation System - IV
Sprinkler Irrigation System - III
Sprinkler Irrigation System - II
Sprinkler Irrigation System - I
Furrow Irrigation System - IV
Furrow Irrigation System - III
Furrow Irrigation System - II
Furrow Irrigation System - I
Border Irrigation System - IV
Border Irrigation System - III
Border Irrigation System - II
Border Irrigation System - I
Irrigation Methods and their Suitability
Irrigation Methods - VI
Irrigation Methods - V
Irrigation Methods - IV
Irrigation Methods - III
Irrigation Efficiencies - II and Irrigation Methods and their Suitability
Irrigation Efficiencies - Part 1
Crop. Water Requirements (continue)
Crop. Water Requirements (Continued)
Crop. Water Requirements (Contd.)
Crop Water Requirements Continued
Crop Water Requirements (Continued)
Crop Water Requirements (Contd.)
Crop Water Requirements
Soil - Water - Plant Relationships (Contd.) & Infiltration
Soil- Water - Plant Relationships (Continue)
Soil - Water- Plant Relationships (Continued)
Soil - Water - Plant Relationships (Contd.)
Soil – Water - Plant Relationships
Introduction to Irrigation Water Management
105102160
Civil Engineering
NOC:Geoenvironmental Engineering (Environmental Geotechnology): Landfills, Slurry Ponds & Contaminated Sites
Prof. Manoj Datta
Video
IIT Delhi
Select
Liners for Landfills - Part 1
Liners for Landfills - Part 2
Liners for Landfills - Part 3
Covers for Landfills - Part 1
Covers for Landfills - Part 2
Generation and Control of Leachate
Generation and Control of Landfill Gas
Stability of Slopes - Part 1
Stability of Slopes- Part 2
Stability of Slopes- Part 3
Introduction to Geoenvironmental Engineering
Sources & Impact of Contamination
Waste-Soil Interaction
Solid Waste Generation and Disposal
Waste Minimization by Integrated Solid Waste Management (ISWM)
Integrated Solid Waste Management (ISWM) - Case Studies
Planning of Landfills - Part 1
Liners for Landfills - Part 4
Principles of Landfilling
Planning of Landfills - Part 2
Slurry Disposal on Land
Disposal of Slurry Waste in Ponds & Impoundments and Dry Waste in Mounds
Geotechnical Properties of Coal Ash & Mine Tailings - Part 1
Geotechnical Properties of Coal Ash & Mine Tailings - Part 2
Cost of Geotechnical Components of Landfills
Construction and Operation of Landfills
Site Selection for Landfills
Some Solved Examples
Control and Remedial Measures at Contaminated Sites - Part 2
Closure, Rehabilitation and Expansion of MSW Landfills
Control and Remedial Measures at Contaminated Sites - Part 1
Subsurface Monitoring Around Landfills - Part 1
Subsurface Monitoring Around Landfills - Part 2
Planning & Design of Slurry Ponds
Stability of Incrementally Raised Embankments- Part 1
Stability of Incrementally Raised Embankments- Part 2
Remedial Measures for Slope Failures in Embankments / Dykes of Slurry Ponds
Environmental Control at Slurry Ponds
Geotechnical Reuse of Waste Materials- Part 1
Geotechnical Reuse of Waste Materials- Part 2
End-of-the-Course Review
105103021
Civil Engineering
Advanced Hydraulics
Dr. Suresh A Kartha
Video
IIT Guwahati
Select
Introduction - advanced hydraulics & course structure
Various classifications of open channel flows
Flow classifications & velocity distribution
Pressure distribution
Equation of continuity & energy
Specific energy & critical flow
Energy, momentum & specific force
Computation of critical flow part -1
Critical flow computations
Introduction to uniform flow
Manning's equation and normal depth
Uniform Flow Computations - part 1
Uniform flow in compound sections, concept of normal slope
Uniform flow approximation for flood discharge
Design of channels for uniform flow
Design of channels using uniform flow
Design of erodible channels
Introduction to gradually varied flows
Gradually varied flow equations
Classification of gradually varied flow - part 1
Classification of gradually varied flow - part 2
Gradually varied flow profiles with change in bed slopes
GVF profile properties and transitional depths
Gradually varied flow computations - part 1
Gradually varied flow computations RK method - part 2
Standard step method for gradually varied flow computations
Spatially varied flow
Features on spatially varied flow
Rapidly varied flow - introduction
Theoretical aspects of hydraulic jump
Characteristics of jumps in rectangular channel
Features of hydraulic jumps
Jumps as energy dissipators
Jump controls
Surges (1)
Surges (2)
Channel transitions
Channel transitions - part 2
Channel transition - part 3
Application of momentum principles
Pumps - 1
Turbines - part 3 (pumps, turbines)
Turbines, cavitation
105103023
Civil Engineering
Construction Economics & Finance
Dr. Bulu Pradhan
Web
IIT Guwahati
Select
Basic principles
Equivalence
Cash flow diagram
Single payment present worth factor (SPPWF)
Uniform series compound amount factor
Cash flow involving arithmetic gradient payments or receipts
Arithmetic gradient
Cash flow involving geometric gradient series
Comparison of alternatives
Comparison by present worth method-I
Comparison by present worth method-II
Comparison of alternatives by future worth method
Comparison by future worth method
Comparison of alternatives by annual worth method
Comparison by annual worth method
Rate of return
Incremental Rate of return-I
Incremental Rate of return-II
Capitalized cost analysis-I
Capitalized cost analysis-II
Benefit-cost analysis
Incremental benefit-cost ratio analysis
Breakeven analysis
Breakeven analysis for two and more than two alternatives
Depreciation-I
Depreciation -II
Switching between different depreciation methods
Inflation
Equivalent worth calculation including the effect of inflation
Equipment costs
Operating cost
Buy, Rent and Lease Options
Replacement Analysis -I
Replacement Analysis – II
Cost Estimating
Types of Estimates
Approximate estimates
Parametric estimate
Financial management
Chart of accounts
Balance sheet
Financial ratios
Working capital management
Assignment
105103025
Civil Engineering
Geo-environmental Engineering
Dr. S. Sreedeep
Web
IIT Guwahati
Select
Scope of geoenvironmental engineering
Multidisciplinary aspects of geoenvironmental engineering
Case histories
Soil mineralogy and its significance
Soil-water interaction
Diffused double layer
Cation exchange capacity
Quantification of soil water
Hydrologic horizons
Basic concepts of unsaturated soil
Soil-water-contaminant interactions and its implications
Evolution of waste containment facilities and disposal practices
Landfills
Methods for landfill site selection
Design of landfills
Engineered containment landfills
Design philosophy of compacted liner
Determination of diffusion coefficient
Contaminated site characterization and risk assessment
Physico-chemical methods of remediation
Other methods of remediation
Examples of in-situ remediation
Soil contaminant analysis and Electrical property of soil
Measurement of electrical property
Thermal property of soil
Water content and permeability measurements
Ground Penetrating Radar for site evaluation
Introduction to geotechnical centrifuge modelling
Problems: Module 1
Problems: Module 2
Problems: Module 3
Problems: Module 4
Problems: Module 5
105103026
Civil Engineering
Ground Water Hydrology
Dr. Rajib K. Bhattacharjya
Web
IIT Guwahati
Select
Introduction to groundwater hydrology 1
Introduction to groundwater hydrology 2
Darcy’s law
Extension of Darcy’s Law
Equivalent Hydraulic Conductivity
Aquifer Transmissivity
Storage coefficients
Dupuit Approximation for Phreatic Aquifer
Flow through unconfined horizontal stratified aquifer
Governing equation for flow through porous medium
Governing equation for leaky aquifer
Governing equation for three-dimensional flow in porous medium
Solution of the flow equation
Solution of 2D steady flow problem in a confined aquifer
Governing equation for radial flow in an aquifer
Solution of steady flow problem of confined and unconfined aquifer
Solution unsteady flow problem of confined aquifer
Time drawdown relations for constant, discrete and variable pumping scenarios
Solution unsteady flow problem of unconfined aquifer and leaky confined aquifer
Partially penetrated well and change in hydraulic properties near a well
Multiple well system and well near aquifer boundary
Estimation of aquifer parameters
Introduction to Groundwater management models
Solution of groundwater management model (part I)
Management of potential aquifers (part II)
Solution of groundwater management problem using excel solver
Groundwater inverse modeling using excel
Safe yield and stream-aquifer interaction
Artificial recharge
Estimation of groundwater recharge
Introduction
Advection-dispersion equation for solute transport in porous media
Analytical solution of diffusion equation
Analytical solution of diffusion equation for 2D and 3D system
Solution of diffusion equation for distributed and continuous source
Analytical solution of one dimensional advection diffusion equation
Solution of Advection-Diffusion equation using Matlab
Retardation of solutes 1
Retardation of solutes 2
Solution of Diffusion equation using finite difference
Reference 1
Reference 2
Reference 3
Reference 4
105103027
Civil Engineering
Probability Methods in Civil Engineering
Dr. C. Mallikarjuna
Web
IIT Guwahati
Select
Variability in the data
Applications in Civil Engineering
Random Events and Graphical description of the data
Numerical description of the data
Numerical description of the grouped data
Introduction to probability: Sample space, event space and events
Theory of sets
Various approaches to probability
Conditional probability, total probability and Baye’s theorem
Definition, Types of random variables; Discrete random variables
Continuous random variables: pdf and cdf
Characteristics of random variables
Moment generating function; Multiple random variables and Joint distribution of two random variables
Conditional probability functions
Bernoulli and Binomial distributions
Geometric distributions
Poisson and negative binomial distributions
Applications of Poisson and Pascal distributions
Continuous distributions; Uniform distribution.
Applications of negative exponential distribution
Normal distribution, Central limit theorem
Normal distribution and its applications
Lognormal and Gamma distributions
Gamma distribution and its applications
Erlang and Pearson Type III distributions
Extreme Value distributions
Random samples, statistics, and sampling distributions
z and t- distributions
Chi-square and F-distributions
Parameter estimation
Confidence interval for the population parameters-I
Confidence interval for the population parameters-II
Hypotheses and Types of errors
Hypotheses formulation and testing
Hypotheses testing on population mean
Hypotheses testing on two population means
Goodness of fit testing
Regression analysis-I
Regression analysis-II
Regression analysis III
105103093
Civil Engineering
Construction Planning and Management
Prof. Arbind Kumar Singh
Web
IIT Guwahati
Select
Overview
General
Grouping
Some useful terms
Life Cycle
Construction as industry
Challenges in construction
Learning Requirement of Construction Industry
Various Parties involved
Contracts
Type of contracts
Stages of awarding contract
Disputes and Arbitrations
Estimation
Rate analysis
Measurement in civil engineering
Project planning
Activity Time
Event
Quality in construction
Safety in construction
Earthwork
drilling and blasting
Tunneling
piling
dewatering
concreting
IT in construction
Database Management system
Spatial data management
Communication and computer network
105103095
Civil Engineering
Fluid Mechanics
Dr. N. Sahoo
Web
IIT Guwahati
Select
Fluid continum
Fluid as a continuum
Properties of fluid
viscosity
Surface Tension
Capillarity
Vapour Pressure
System and control volume
Pressure
Pascal's Law
Basic equations of fluid statics
Pressure variations
Pressure Measuring Devices
Inclined Manometer
Hydrostatic force on submerged surfaces
Hydrostatic force on a Curved Submerged surface
Buoyancy
Buoyant force in a layered fluid
Stability
Computation of the Metacentric Height
Liquids in Rigid Body Motion
Uniform acceleration of a liquid container
Liquid in Rigid body motion part-II
Cylinder liquid-filled container
Introduction
Types of Fluid Flow
Laminar and Turbulent flow
Velocity Field
The Acceleration field
Deformation of fluid particles
Rotation
Linear deformation
The Reynolds Transport Theorem
One- dimensional fixed control volume
Arbitrary Fixed Control Volume
Basic equn -Integration
Energy Equation (Conservation of energy)
Energy loss of fluid
Experiment Test Rig - Losses in Piping system
Presentation of experimental data
Conclusion
Practical appln of Bernoulli's equn
Bernoulli's equn contd..
Experiemental Test RIG - Venturi Meter
Experimental procedure
Conclusion
Irrotational Flow,Stream Function and velocity Potential
Basic Plane Potential flows
Flow Through Mouthpiece
Flow Over Notches and weirs
Open Channle Flow
Uniform Depth open Channel flow
specific Energy And Critical Depth
General Characteristics of Pipe Flow
Turbulent Flow Through Pipes
Dimensional Analysis
Pi Theorem
Dimenional Numbers
Typical Model Studies
Solved problems-Properties of fluid
Solved problems-Surface Tension
Solved problems-Vapour Pressure
Solved problems-Basic equations of fluid statics
Solved problems-Pressure Measuring Devices
Solved problems-Hydrostatic force on submerged surfaces
Solved problems-Buoyancy
Solved problems-Stability
Solved problems-Liquids in Rigid Body Motion
Solved problems-Liquid in Rigid body motion part-II
Solved problems-Introduction
Solved problems-The Reynolds Transport Theorem
Solved problems-Basic equn -Integration
Exercices-Basic equn -Integration
Solved problems-Energy Equation (Conservation of energy)
Exercises-Energy Equation (Conservation of energy)
Solved problems-Energy loss of fluid
Exercises-Energy loss of fluid
Solved problems-Practical appln of Bernoulli's equn
Exercises-Practical appln of Bernoulli's equn
Solved problems-Bernoulli's equn contd..
Exercises-Bernoulli's equn contd..
Solved problems-Irrotational Flow,Stream Function and velocity Potential
Exercises-Irrotational Flow,Stream Function and velocity Potential
Solved problems-Basic Plane Potential flows
Exercises-Basic Plane Potential flows
Solved problems-Flow Through Mouthpiece
Exercises-Flow Through Mouthpiece
Solved problems-Flow Over Notches and weirs
Exercises-Flow Over Notches and weirs
Solved problems-Open Channle Flow
Exercises-Open Channle Flow
Solved problems-Uniform Depth open Channel flow
Exercises-Uniform Depth open Channel flow
Solved problems-specific Energy And Critical Depth
Exercises-specific Energy And Critical Depth
Solved problems-General Characteristics of Pipe Flow
Exercises-General Characteristics of Pipe Flow
Solved problems-Turbulent Flow Through Pipes
Exercises-Turbulent Flow Through Pipes
References-Dynamics of fluid flow
References-Dimensional Analysis and Hydraulic similitude
105103096
Civil Engineering
Hydraulics
Prof. Arup Kumar Sharma
Video
IIT Guwahati
Select
Introduction to Hydraulics
Open Channel Hydraulic Part - 1
Open Channel Hydraulics Part - 2
Velocity and Pressure Distribution
Practical use of velocity co-efficient in channel flow
Conservation Principles & ioioGoverning Equations
Uniform Flow
Uniform Flow Formula
Computation of Uniform Flow Part - 1
Computation of Uniform Flow Part - 2
Uniform Flow in Mobile Boundary Channel
Incipient Motion Condition and Regime of Flow
Concept of Specific Energy
Computation of Critical Depth
Specific Force, Critical Depth & Sequent Depth
Non-uniform Flow: Gradually Varied Flow
Classification of Gradually Varied Flow
Characteristic of Gradually Varied Flow
Characteristic of Gradually Varied Flow & its Computation
Gradually Varied Flow & its Computation
Computation of Gradually Varied Flow
Gradually Varied Flow: Numerical Methods and Problem Solving
Rapidly Varied Flow: Hydraulic Jump
Hydraulic Jump
Flow Over Hump and Channel Contraction
Canal Design - 1
Canal Design - 2
Design of Alluvial Channel
Design of Alluvial Channel - 2
Design of Alluvial Channel - 3
Unsteady Flow: Waves and its Classification
Unsteady Flow Part - 2
Unsteady Flow Part - 3
Pipe Flow: Friction Loss
Pipe Flow: Losses in Pipes
Pipe in Series & Parallel
Pipe Network Analysis
Water Hammer & Surge Tank
Pipe Flow Friction Loss
Pipe Flow: Losses in Pipe
105103097
Civil Engineering
Soil Mechanics
Prof. Baleshwar Singh
Web
IIT Guwahati
Select
Introduction to soil Mechanics
Formation of soils
Soil Types
Phase Relations of Soils
Three Phase Systems
Volume Relations
Weight Relations
Inter-Relations
Soil Classification
Particle Size Distribution
Grain-Size Distribution Curve
Grading Characteristics
Consistency of Soils
Indian Standard Soil Classification System
Formation of Clay Minerals
Structure of Clay Minerals
Two Layer Sheet Minerals
Three Layer Sheet Minerals
Fine Soil Fabric
Stresses in the Ground
Principle of Effective Stress
Effective Stress in Unsaturated Zone
Effective Stress Under Hydrodynamic Conditions
The Importance of Effective Stress
Permeability of Soils
Darcy's law
Permeability of Different Soils
Factors Affecting Permeability
Laboratory Measurement of Permeability
Field Tests for Permeability
Permeability of Stratified Deposits
Seepage in Soils
One Dimensional Flow
Two-dimensional Flow
Procedure for Drawing Flownets
Uses of Flow-Nets
Compression and Consolidation of Soils
Compressibility Characteristics
Normally Consolidated and Over-Consolidated Clays
Estimation of PreConsolidation Stress
Analysis of Consolidation - Terzaghi's Theory
Solution of Terzaghi's Theory
Shear Strength of Soils
Mohr-Coulomb Failure Criterion
Direct Shear Test
Triaxial Test
Total Stress Strength Parameters
Effective Stress Strength Parameters
Pore Water Pressure Parameters
Stress-Strain Behaviour of Sands
Compaction of Soils
Dry Density - Water Content Relationship
Compaction of Cohesionless Soils
Engineering Behaviour of Compacted Soils
Field Compaction and Specifications
105103133
Civil Engineering
Financing Infrastructure Projects
Dr. Laishram Boeing Singh
Web
IIT Guwahati
Select
Infrastructure development and economic growth
Sources Of Financing Infrastructure Projects
Limitations Of Traditional Procurement Process
Infrastructure Development Through PPP Route
Stakeholders' Perspectives
Governments' Roles In Successful PPP Projects
BOT Appraisal
BOT Appraisal Framework
Value For Money Assessment
PPP Procurement Process
PPP Contractual Package
PPP Procurement Process In India
Concession Design And Award
Concession Design
Price Setting
Price Adjustment
Termination And Compensation
Force Maejure And Unforseen Events
Performance targets, penalties and bonuses
Dispute Settlement
Concession Award Process
Concession Award - Bidding Evaluation And Bidding Rules
Model Concession Agreement
Risks Associated With Various Infrastructure Projects
Risk Management
Risk Identification
Risk Assessment
Risk Allocation
Risk Mitigation
Risk Allocation Framework - PPP Road Projects In India
Introduction To Project Finance
Project Financing Process
Project Finance - Security Package
Preparing Financing Plan
Financial Modeling
Financial Evaluation
Lending Institutions In India
Bonds And Bond Valuation
Bonds Financing For Infrastructure Projects – Introduction
Rating Methodologies - Domestic Credit Rating Agencies
105103139
Civil Engineering
Unsaturated Soil Mechanics
Dr. Tadikonda Venkata Bharat
Web
IIT Guwahati
Select
Introduction
Motivation for unsaturated soil mechanics
Applications Associated with Unsaturated Soils
Fundamental Principles
State Variables and Material constants
State Variables and Material Constants (Continued)
Thermodynamic equilibrium between free water and air
Soil hydraulic characteristics
Soil hydraulic characteristics (Continued)
Water retention mechanism in soils
Hydraulic Conductivity
Measuring and modeling: Soil Hydraulic Characteristics
Measuring and modeling: Soil Hydraulic Characteristics(Continued)
Suction measurement
Suction measurement -I
Suction measurement -II
Suction measurement -III
Measurement of total suction and hydraulic conductivity
Measurement of hydraulic conductivity-I
Measurement of hydraulic conductivity -II
Modeling of soil hydraulic characteristics
Flow through unsaturated soils I
Flow through unsaturated soils II
Transient Flow
Shear Strength
Stresses in unsaturated soils
Measurement of the shear strength-I
Measurement of the shear strength-II
Measurement of Bishop’s effective stress parameter
Extended M-C criterion by Fredlund
Estimation of extended M-C parameters-I
Estimation of extended M-C parameters -II
Estimation of extended M-C parameters -III
Estimation of extended M-C parameters -IV
Nonlinearity in the extended M-C failure envelope
Empirical relations for predicting shear strength
Swelling and Collapse behavior
Methods of testing Swelling Pressure
Questions-1
Questions-2
Determination of Water Diffusivity
105103140
Civil Engineering
Structural Reliability
Dr. Arunasis Chakraborty
Web
IIT Guwahati
Select
Introduction Structural Reliability
Basic Statistics
Theory of Probability
Theory of Probability(Contd.)
Algebra of Variance
Prob. Distributions
Hypothesis Testing
Concept of Limit State & Reliability
FORM
FORM (Contd.1)
FORM (Contd.2)
FORM (Contd.3)
Mod. Rack. Algo & Nataf Model
SORM
Monte-Carlo Methods
Monte-Carlo Methods (Contd.)
Latin Hypercube Sampling
Variance Reduction Technique & Importance Sampling
Adaptive Sampling
Subset Simulation
Subset Simulation (Contd.)
RSM
RSM (Contd.)
ARSM
SRSM
SRSM (Contd.1)
SRSM (Contd.2)
SRSM (Contd.3)
Stochastic Models of Loads
Partial Safety Factors
Safety Checking Format
System Reliability
System Reliability (Contd.)
Fatigue Reliability
Time Dependent Reliability
RBDO
RBDO (Contd.1)
RBDO (Contd.2)
SFEM
Matlab-ANSYS Batch Analysis
Matlab-ANSYS Batch Analysis (Contd.1)
Matlab-ANSYS Batch Analysis (Contd.2)
Appendix
Appendix (Contd.1)
Appendix (Contd.2)
Bibliography
Assignments
105104029
Civil Engineering
Advanced Hydrology
Dr. Ashu Jain
Video
IIT Kanpur
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lecture-01
lecture-02
lecture-03
lecture-04
lecture-05
lecture-06
lecture-07
lecture-08
lecture-09
lecture-10
lecture-11
lecture-12
lecture-13
lecture-14
lecture-15
lecture-16
lecture-17
lecture-18
lecture-19
lecture-20
lecture-21
lecture-22
lecture-23
lecture-24
lecture-25
lecture-26
lecture-27
lecture-28
lecture-29
lecture-30
lecture-31
lecture-32
lecture-33
lecture-34
lecture-35
lecture-36
lecture-37
lecture-38
lecture-39
lecture-40
lecture-41
lecture-42
lecture-43
lecture-44
105104030
Civil Engineering
Concrete Engineering and Technology
Dr. Sudhir Misra
Video
IIT Kanpur
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Lecture-01 Introduction and course overview
Lecture-02 Constituents of concrete (Part 1 of 2)
Lecture-03 Constituents of concrete (Part 2 of 2)
Lecture-04 Admixtures in concrete – mineral and chemical
Lecture-05 Hydration of cement
Lecture-06 Basic properties of concrete
Lecture-07 Proportioning of concrete mixes (Part 1 of 3)
Lecture-08 Proportioning of concrete mixes (Part 2 of 3)
Lecture-09 Proportioning of concrete mixes (Part 3 of 3)
Lecture-10 Pores and porosity in concrete
Lecture-11 Porosimetry – measuring pores in concrete
Lecture-12 Principles of quality control in concrete construction
Lecture-13 Quality control and acceptance criteria for concrete based on compressive strength
Lecture-14 Fibre reinforced concrete
Lecture-15 High strength concrete
Lecture-16 Mass concrete (Part 1 of 2)
Lecture-17 Mass concrete (Part 2 of 2)
Lecture-18 Concreting in cold weather
Lecture-19 Concreting in hot weather
Lecture-20 Roller compacted concrete
Lecture-21 Self-compacting concrete
Lecture-22 Testing self-compacting concrete
Lecture-23 Shotcrete and underwater concrete
Lecture-24 Alkali – aggregate reaction (Part 1 of 2)
Lecture-25 Alkali – aggregate reaction (Part 2 of 2)
Lecture-26 Reinforcement corrosion in concrete
Lecture-27 Chloride penetration in concrete
Lecture-28 Using epoxy-coated bars in concrete structures
Lecture-29 Using FRP as reinforcement in concrete structures (Part 1 of 2)
Lecture-30 Using FRP as reinforcement in concrete structures (Part 2 of 2)
Lecture-31 Grouting and importance of formwork in concrete construction
Lecture-32 Carbonation and freezing & thawing in concrete structures
Lecture-33 Using recycled aggregates in concrete construction
Lecture-34 Basic non-destructive testing for concrete structures
Lecture-35 Measuring permeability in concrete
Lecture-36 Some additional topics
Lecture-37 Considerations in repair of concrete structures (Part 1 of 2)
Lecture-38 Considerations in repair of concrete structures (Part 2 of 2)
Lecture-39 Laboratory demonstration
Lecture-40 Review of the course
105104034
Civil Engineering
Ground Improvement Techniques
Dr. Nihar Ranjan Patra
Web
IIT Kanpur
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Classification of Ground modification Techniques
Introduction to Mechanical Modifications
Mechanical Modifications
Special Techniques
Stone columns
Design problem of Stone column (part I)
Design problem of Stone column (part II)
Failure Mechanism and group of stone columns
Methods of construction of Granular Piles
Introduction to preloading and vertical drains
Combined radial and vertical consolidation and smear effect
Preloading without vertical drains
Introduction to reinforced earth
Material and failure modes
Design Procedures
Mess, Bar, strips and design consideration
Solved Example of Reinforce Earth
Introduction to Geotextiles and Geomembranes
Basic functions of Geotextiles and Geomembranes
GeneralApplications of Geotextiles and Geomembranes
General Applications of Geotextiles and Geomembranes2
Resistance of Geotextiles
Design of geotextile walls
Geotextile stabilized embankment
Embankment design methods
Geotextiles as filters
Geogrid properties
Geogrid as reinforcement
Geonet properties and test methods
Properties of Geomembrane
Design with Geomembranes
Run out and Anchor Trench Design of Geomembrane
Grouting and Grout Material
Grouting flow and grouting techniques
Ground Anchor and Rock bolt
Soil Nailing
Optimum Design of Nailed slopes
Definition and mechanism of Liquefaction
Standard curves and correlation for liquefaction
Evaluation of zone of liquefaction in field
105104098
Civil Engineering
Advanced Transportation Engineering
Prof. Partha Chakraborty
Web
IIT Kanpur
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Basic concept of pavement analysis and design
Pavement Materials
Analysis of Concrete Pavement
Various design approaches
Design of dowel bars
Design of tie bars
Design of runway, taxiway and apron
Reinforced Concrete Pavement
Concrete pavement shoulder
Composite Pavements
Comparative studies of concrete versus bituminous pavement
Construction of Concrete Pavements
Construction of joints
Quality control issues
Maintenance of concrete pavements
Basics of Traffic Engineering - A Recapitulation
Speed and Density
Flow
Introduction & Fundamental Relation
An Introduction to Macroscopic Models
Macroscopic Models- Linear Model/ Generalized Polynomial Model of u - k relation
Macroscopic Models - Logarithmic Model of u-k relation/Exponential Model of u-k Relation
Lecture 5
Introduction to Interruptions
Traffic Flow at Signalized Intersections
Traffic Flow at Unsignalized Intersections
Introduction and capacity of facilities with uninterrupted flow
Capacity at signalized and unsignalized intersections and LOS
Introduction, transport supply and demand
Overview of the planning process, role of government
Demand analysis, supply analysis and evaluation
Introduction
Trip-generation Models
Trip Distribution Models
Destination Choice Models
Modal Split Model
Traffic Assignment Models
Incremental-assignment model
User-equilibrium model
Shortest path finding algorithms (Dijkstra's algorithm)
Shortest path finding algorithms (Floyd's algorithm)
Definition of parameters
Cost Components in Transportation System
Benefit Component in Transportation System
Economic Evaluation of Highway Projects
Transportation Financing
Exercise-Demand Analysis
105104099
Civil Engineering
Environmental Air Pollution
Prof. Mukesh Sharma
Video
IIT Kanpur
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Introduction to Atmosphere
Air Pollution Systems
Air Quality Standards
Types and Forms of Air Pollutants
Measurement Units and Particulate classification
Interpretation and Particle size Distribution
Atmospheric formation of Air Pollutants I
Atmospheric formation of Air Pollutants II
Atmospheric formation of Air Pollutants III
Kinetics of Air pollution and combustion processes
Internal Combustion Engine and Air Pollution I
Internal Combustion Engine and Air Pollution II
Air Pollution and Health I
Air Pollution and Health II
Emission Inventory
Sources of Air Pollution
Emission from Fugitive Sources and Sulfuric Acid Production
Aluminium Production and Air Pollution I
Aluminium Production and Air Pollution II
Coke Production and Air Pollution
Examples for Practice
Meteorological Measurements and their interpretation
Examples for Practice - Dispersion Modeling
Vertical Temperature Profile of Atmosphere
Stability, Mixing Height and Plume Behavior I
Stability, Mixing Height and Plume Behavior II
Examples - Solar Radiation Based Stability Calculation
Air Quality Modeling I
Air Quality Modeling II
Derivation of Gaussian Model
Gaussian Model - Useful Formulation
Plume rise, Area and Line Source Model
Air Quality Modeling - Maximum Ground Level concentration
Examples of Air Quality Modeling
Air Pollution Control Devices I
Air Pollution Control Devices I
Source Emission Monitoring
Receptor Source Modeling
Environmental laws
105104100
Civil Engineering
Modern Surveying Techniques
Dr. Onkar Dikshit
Web
IIT Kanpur
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Introduction.
Electronic Distance Measuring Instrument (EDMI)
Electronic Theodolite and Total Station
Basic GPS
Positioning using Satellites
GPS Principles
GPS receivers
More on GPS principles
GPS Errors and Accuracy
Error sources in GPS observations
Satellite geometry and Accuracy measures
GPS Measurements Techniques I
GPS Measurements Techniques II
GPS Measurements Techniques III
GPS Algorithms/Navigational Solutions
Other Satellite navigation Systems and GPS Modernization
Introduction..
Geometry of vertical photographs
Geometry of tilted photographs
Stereoscopy and parallax
Flight planning
Developments in photogrammetry
Introduction
Physical basis of remote sensing ( Electromagnetic Radiation(EMR) )
Physical basis of remote sensing ( EMR interaction in atmosphere )
Physical basis of remote sensing ( EMR interaction on ground :Surfaces )
Physical basis of remote sensing ( EMR interaction on ground :Water & Snow )
Physical basis of remote sensing ( EMR interaction on ground :Soil )
Physical basis of remote sensing ( Radiometry )
Physical basis of remote sensing ( Radiometry ) contd
Remote sensing: Interpretation
Introduction to image processing techniques
Image enhancement
Information extraction
Introduction to GIS
Geographical data in computer: Data structures for GIS-1
Geographical data in computer: Data structures for GIS - 2
GIS manipulation, analysis and modelling - 1
GIS manipulation, analysis and modelling - 2
Errors and corrections
References-Modern Surveying Equipment
References-?Global Positioning System
References-Photogrammetry
References-Geographical Information System
105104101
Civil Engineering
Surveying
Dr. Bharat Lohani
Video
IIT Kanpur
Select
Module 1 Lecture 1
Module 2 lecture 1
Module 2 Lecture 2
Module 2 Lecture 3
Module 2 Lecture 4
Module 2 Lecture 5
Module 3 Lecture 1
Module 3 Lecture 2
Module 3 Lecture 3
Module 3 Lecture 4
Module 4 Lecture 1
Module 4 Lecture 2
Module 5 Lecture 1
Module 5 Lecture 2
Module 5 Lecture 3
Module 5 Lecture 4
Module 5 Lecture 5
Module 5 Lecture 6
Module 6 Lecture 1
Module 6 Lecture 2
Module 6 Lecture 3
Module 7 Lecture 1
Module 7 Lecture 2
Module 7 Lecture 3
Module 7 Lecture 4
Module 7 Lecture 5
Module 8 Lecture 1
Module 8 Lecture 2
Module 9 Lecture 1
Module 9 Lecture 2
Module 9 Lecture 3
Module 9 Lecture 4
Module 9 Lecture 5
Module 10 Lecture 1
Module 11 Lecture 1
Module 11 Lecture 2
Module 11 Lecture 3
Module 12 Lecture 1
Module 12 Lecture 2
Module 12 Lecture 3
105104102
Civil Engineering
Water and Waste Water Engineering
Dr. P. Bose
Web
IIT Kanpur
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Raw Water Source and Quality
Water Quantity Estimation
Intake, Pumping and Conveyance
Water Treatment Philosophy
Preliminary Treatment: Silt Excluder Design
Sedimentation Tank Design
Coagulation - Flocculation Theory
Rapid Mixing, Coagulation - Flocculation
Coagulation - Flocculation
Filtration Theory
Rapid Sand Filtration
Disinfection
Treatment Plant Siting and Hydraulics
Water Storage Tanks and Water Supply Network
Water Supply Network Design
Water Treatment and Supply for Rural Areas
Wastewater Quality and Quantity Estimation
Layout and Design of Municipal Sewers
Sewer Appurtenances, Sump-well and Sewage Pumping
Wastewater Treatment Philosophy
Bar Rack/Screens and Equalization Tank Design
Grit Chamber and Primary Sedimentation Tank Design
Fundamentals of Applied Microbiology
Activated Sludge Process Description
Design of Activated Sludge Systems
Design of Activated Sludge Systems
Aerator Design for Activated Sludge Process
Trickling Filter Fundamentals and Design
Other Aerobic Treatment Systems
Anaerobic Treatment Fundamentals
Design of Anaerobic Reactors
Design of UASB Reactors
Nitrification: Process Description and Design
Denitrification: Process Description and Design
Phosphorus Removal and Other Advanced Treatment
Fundamentals of Residual Management
Residual Management Process Design
Siting and Hydraulics of Wastewater Treatment Plants
Treated Effluent Discharge, Reuse and Recycling
Oxidation, Facultative and Anaerobic Ponds
Phyto-Remediation and Root-Zone Treatment
Septic Tanks, Soak Pits, Cesspools, Dry Latrines
105104103
Civil Engineering
Water Resources Engineering
Prof. Rajesh Srivastava
Video
IIT Kanpur
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Lecture 1
Lecture 2
Lecture 3
Lecture 4
Lecture 5
Lecture 6
Lecture 7
Lecture 8
Lecture 9
Lecture 10
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 26
Lecture 27
Lecture 28
Lecture 29
105104131
Civil Engineering
Geotechnical Measurements & Explorations
Dr. Nihar Ranjan Patra
Video
IIT Kanpur
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Lecture-01.Geotechnical Measurements & Explorations
Lecture-02.Geotechnical Measurements & Explorations
Lecture-03.Geotechnical Measurements & Explorations
Lecture-04.Geotechnical Measurements & Explorations
Lecture-05.Geotechnical Measurements & Explorations
Lecture-06.Geotechnical Measurements & Explorations
Lecture-07.Geotechnical Measurements & Explorations
Lecture-08.Geotechnical Measurements & Explorations
Lecture-09.Geotechnical Measurements & Explorations
Lecture-10.Geotechnical Measurements & Explorations
Lecture-11.Geotechnical Measurements & Explorations
Lecture-12.Geotechnical Measurements & Explorations
Lecture-13.Geotechnical Measurements & Explorations
Lecture-14.Geotechnical Measurements & Explorations
Lecture-15.Geotechnical Measurements & Explorations
Lecture-16.Geotechnical Measurements & Explorations
Lecture-17.Geotechnical Measurements & Explorations
Lecture-18.Geotechnical Measurements & Explorations
Lecture-19.Geotechnical Measurements & Explorations
Lecture-20.Geotechnical Measurements & Explorations
Lecture-21.Geotechnical Measurements & Explorations
Lecture-22.Geotechnical Measurements & Explorations
Lecture-23.Geotechnical Measurements & Explorations
Lecture-24.Geotechnical Measurements & Explorations
Lecture-25.Geotechnical Measurements & Explorations
Lecture-26.Geotechnical Measurements & Explorations
Lecture-27.Geotechnical Measurements & Explorations
Lecture-28.Geotechnical Measurements & Explorations
Lecture-29.Geotechnical Measurements & Explorations
Lecture-30.Geotechnical Measurements & Explorations
Lecture-31.Geotechnical Measurements & Explorations
Lecture-32.Geotechnical Measurements & Explorations
Lecture-33.Geotechnical Measurements & Explorations
Lecture-34.Geotechnical Measurements & Explorations
Lecture-35.Geotechnical Measurements & Explorations
Lecture-36.Geotechnical Measurements & Explorations
Lecture-37.Geotechnical Measurements & Explorations
Lecture-38.Geotechnical Measurements & Explorations
Lecture-39.Geotechnical Measurements & Explorations
Lecture-40.Geotechnical Measurements & Explorations
105104132
Civil Engineering
Advance Geotechnological Engineering
Dr. Nihar Ranjan Patra
Web
IIT Kanpur
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Lecture 1
Lecture 2
Lecture 3
Lecture 4
Module1-References
Module1- Problems
Lecture 5
Lecture 6
Lecture 7
Lecture 8
Lecture 9
Lecture 10
Module 2 - Problems
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Module 3 - Problems
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 25
Lecture 26
Module 4 - References
Module 4 - Problems
Lecture 27
Lecture 28
Lecture 29
Lecture 30
Lecture 31
Lecture 32
Lecture 33
Lecture 34
Module 5 - Problems
Lecture 35
Lecture36
Lecture 37
Lecture 38
Lecture 39
Lecture 40
Module 6 - References
Module 6 - Problems
Module 2 - References
Module 3 - References
Module 5 - References
105104135
Civil Engineering
Application of Soil Mechanics
Dr. Nihar Ranjan Patra
Video
IIT Kanpur
Select
Lecture-01-Application of Soil Mechanics
Lecture-02-Application of Soil Mechanics
Lecture-03-Application of Soil Mechanics
Lecture-04-Application of Soil Mechanics
Lecture-05-Application of Soil Mechanics
Lecture-06-Application of Soil Mechanics
Lecture-07-Application of Soil Mechanics
Lecture-08-Application of Soil Mechanics
Lecture-09-Application of Soil Mechanics
Lecture-10-Application of Soil Mechanics
Lecture-11-Application of Soil Mechanics
Lecture-12-Application of Soil Mechanics
Lecture-13-Application of Soil Mechanics
Lecture-14-Application of Soil Mechanics
Lecture-15-Application of Soil Mechanics
Lecture-16-Application of Soil chanics
Lecture-17-Application of Soil Mechanics
Lecture-18-Application of Soil Mechani
Lecture-19-Application of Soil Mechanics
Lecture-20-Application of Soil Mechanics
Lecture-21-Application of Soil Mechanics
Lecture-22-Application of Soil Mechanics
Lecture-23-Application of Soil Mechanics
Lecture-24-Application of Soil Mechanics
Lecture-25-Application of Soil Mechanics
Lecture-26-Application of Soil Mechanics
Lecture-27-Application of Soil Mechanics
Lecture-28-Application of Soil Mechanics
Lecture-29-Application of Soil Mechanics
Lecture-30-Application of Soil Mechanics
Lecture-31-Application of Soil Mechanics
Lecture-32-Application of Soil Mechanics
Lecture-33-Application of Soil Mechanics
Lecture-34-Application of Soil Mechanics
Lecture-35-Application of Soil Mechanics
Lecture-36-Application of Soil Mechanics
Lecture-37-Application of Soil Mechanics
Lecture-38-Application of Soil Mechanics
Lecture-39-Application of Soil Mechanics
Lecture-40-Application of Soil Mechanics
105104136
Civil Engineering
Geotechnical Earthquake Engineering
Dr. Nihar Ranjan Patra
Web
IIT Kanpur
Select
Lec1
Lec2
Lec3
Lec4
Lec5
Lec6
Problem1
Lec7
Lec8
Lec9
Problem2
Lec10
Lec11
Lec12
Lec13
Lec14
Lec15
Lec16
Lec17
Lec18
Lec19
Lec20
Lec21
Lec22
Lec23
Lec24
Lec25
Lec26
Lec27
Lec28
Lec29
Lec30
Lec31
Lec32
Lec33
Lec34
Lec35
Lec36
Lec37
Lec38
Lec39
Lec40
Problem3
Problem4
Problem5
Problem6
Problem7
Problem8
105104137
Civil Engineering
Foundation Analysis and Design
Dr. Nihar Ranjan Patra
Web
IIT Kanpur
Select
main
INTRODUCTION
SOIL CLASSIFICATION SYSTEMS
CAPILLARY RISE IN SOIL
SHEAR STRENGTH
PROBLEMS
REFERENCES
NATURAL SOIL DEPOSITS
PROCEDURES FOR SAMPLING SOIL
CONE PENETRATION TEST
GEOPHYSICAL EXPLORATION
PROBLEMS
REFERENCES
GENERAL CONCEPT
THE GENERAL BEARING CAPACITY EQUATION
BEARING CAPACITY OF LAYERED SOILS-STRONGER SOIL UNDERLAIN BY WEAKER SOIL
RECENT ADVANCES IN BEARING CAPACITY OF FOUNDATIONS ON REINFORCED SOIL
PROBLEMS
REFERENCES
VERTICAL STRESS INCREASE IN A SOIL MASS CAUSED BY FOUNDATION LOAD
SETTLEMENT CALCULATION
ALLOWABLE BEARING CAPACITY
STRIP FOUNDATION ON GRANULAR SOIL REINFORCED BY METALLIC STRIPS
PROBLEMS
REFERENCES
COMMON TYPES OF MAT FOUNDATIONS
FIELD SETTLEMENT OBSERVATIONS FOR MAT FOUNDATIONS
STRUCTURAL DESIGN OF MAT FOUNDATIONS
PROBLEMS
REFERENCES
LATERAL EARTH PRESSURE AT REST
COULOMB’S ACTIVE EARTH PRESSURE
LATERAL EARTH PRESSURE DUE TO SURCHARGE
PASSIVE PRESSURE
PROBLEMS
REFERENCES
GRAVITY AND CANTILEVER WALLS
Check for Bearing Capacity Failure
COMMENTS RELATING TO STABILITY
RETAINING WALLS WITH METALLIC STRIP REINFORCEMENT
RETAINING WALLS WITH METALLIC STRIP REINFORCEMENT
PROBLEMS
REFERENCES
TYPES OF PILES AND THEIR STRUCTURAL CHARACTERISTICS
LOAD TRANSFER MECHANISM
FRICTIONAL (SKIN) RESISTANCE IN CLAY
COMPARISON OF THEORY WITH FIELD LOAD TEST RESULTS
PILE-DRIVING FORMULAS
ULTIMATE CAPACITY OF GROUP
PROBLEMS
REFERENCES
DRILLED SHAFTS
DRILLED SHAFTS IN SAND-LOAD-BEARING CAPACITY
DRILLED SHAFTS IN CLAY-LOAD-BEARING CAPACITY
UPLIFT CAPACITY OF DRILLED SHAFTS
LATERAL LOAD-CARRYING CAPACITY
CAISSONS
PROBLEMS
REFERENCES
105104147
Civil Engineering
NOC:Geology and Soil Mechanics
Dr. Priyanka Ghosh
Video
IIT Kanpur
Select
Index Properties Of Soil- C
Index Properties Of soil- D
Classification Of Soils- A
Classification Of Soils- B
Classification Of Soils And Clay Mineralogy- A
Classification Of Soils And Clay Mineralogy- B
Soil compaction- A
Soil compaction- B
Soil compaction- C
Soil compaction- D
Soil compaction & Permeability
Permeability - A
Index Properties Of Soil- B
Index Properties Of Soil- A
Index Properties Of Soil
Description of soil, Engineering Geology Of Soils and Thier Formation
Permeability - B
Permeability - C
Problems on permeability
Seepage
Seepage - A
Seepage - B
Seepage and In situ stress
In situ stresses- A
In situ stresses- B
In situ stresses - A
In situ stresses - B
In situ stresses - C
Consolidation - A
Consolidation -B
Consolidation- A
Consolidation- B
Consolidation - C
Consolidation- D
Consolidation- E
Shear strength of Soil- B
Shear strength of Soil- A
Consolidation - F
Shear strength of Soil- C
Problem on shear strength of soil
Problem on shear strength of soil -a
Problem on shear strength of soil _a
Shear strength of Soil- e
Shear strength of Soil
Shear Strength of Soils..
Shear strength of Soil_B
Shear Strength of Soils.
Shear Strength of Soils
Earth Pressure on retaining wall
Earth Pressure on retaining wall -A
Tutorial on Index properties of soil
Tutorial on compaction
Tutorial on Permeability - a
Tutorial on Permeability - b
Tutorial On Consoildation
Tutorial on consoildation - a
Tutorial on Sheer Strength
Tutorial on Sheer Strength -a
Earth Pressure on Retaining Wall - a
Earth Pressure on Retaining Wall- 1
Earth Pressure Theories and Problems on Earth Pressure on Retaining Wall
Problems on Earth Pressure on Retaining Wall Edit Lesson
Problems on Earth Pressure on Retaining Wall- 2
Problems on Earth Pressure Theories- 3
Problems on earth pressure theories -4
105104148
Civil Engineering
NOC:Engineering Graphics
Dr. Nihar Ranjan Patra
Video
IIT Kanpur
Select
Isometric Projections-Part 2
Isometric Projections-Part 1
Orthographic Projections-Part 5
Orthographic Projections-Part 4
Orthographic Projections-Part III
Orthographic Projections-Part II
Orthographic Projections-Part I
Isometric Projections-Part 3
Isometric Projections-Part 4
Isometric Projections-Part 5 and Oblique Projections-Part 1
Oblique Projections-Part 2
Sectioning
Geometric Constructions-Part II
Geometric Constructions-Part I
Course Objectives, Lettering and Numbering
Hatching
Orthographic Projections-Assemblies
Missing Lines & Missing Views
Perspective View-Part 1
Perspective View-Part 2
Angular Perspective and Circles in perspective
Perspective View examples and Space Geometry
Space Geometry Cont.
Perspective View- Part 3
True Length, Point View and Slope of Oblique lines
Space Geometry-Introduction
Space Geometry-Part 2
Auxiliary View, Lines ,Planes
Relationship between Lines and Planes , Planes and Planes
Intersection of Solids
AUTOCAD
Development of Surfaces
105104152
Civil Engineering
NOC:Earth Sciences for Civil Engineering
Prof. Javed N. Malik
Video
IIT Kanpur
Select
Rock types and their properties (Part-6)
Introduction to Geosciences in Civil Engineering Part 2
Plate Tectonics and Continental Drift Part 2
Plate Tectonics and Continental Drift Part 3
Plate Tectonics and Continental Drift Part 4
Rock-Forming Minerals and their Properties (Part-1)
Rock-types and their Properties (Part-1)
Rock-types and their Properties (Part-2)
Rock-types and their Properties (Part-3)
Rock types and their properties (Part-6)Seismology and the internal structure of the earth (Part-1)
Seismology and the internal structure of the earth (Part-2)
Seismology and the internal structure of the earth (Part-3) Edit Lesson
Seismology and the internal structure of the earth (Part-4)
Introduction to Geosciences in Civil Engineering Part 1
Rock types and their properties (Part-5)
Rock-types and their Properties (Part-4)
Seismology and the internal structure of the earth (Part-5) & Geological Structures (Part-1)
Geological Structures (Part-2)
Geological Structures (Part-3)
Geological Structures (Part-4)
105104156
Civil Engineering
NOC:Earth Sciences for Civil Engineering - Part 2
Prof. Javed N. Malik
Video
IIT Kanpur
Select
Groundwater
Flood and related hazard (Part-2)
Landslide and subsidence (Part-3)
Tsunami and related hazard (Part-3)
Landslide and subsidence (Part-1)
Civil Engineering applications – geological considerations in dams, tunnels (Part-2)
Civil Engineering applications – geological considerations in dams, tunnels (Part-3) & Tsunami and related hazard (Part-1)
Landslide and subsidence (Part-2)
Active faults its related hazards in India (part-7) & Civil Engineering applications - geological considerations in dams, tunnels (part- 1)
Active faults its related hazards in India (part-6)
Active faults its related hazards in India (part-5)
Tsunami and related hazard (Part-2)
Active faults and its related hazards in India (Part- 3)
Active faults and its related hazards in India (Part- 4)
Active Faults and its Related Hazards in India (Part-2)
Introduction to Geological Hazards and Enviromental Impact (part- 3)
Active Faults and its Related Hazards in India (Part-1)
Introduction to Geological Hazards and Enviromental Impact (part- 2)
Flood and related hazard (Part-1)
Introduction to Geological Hazards and Enviromental Impact (part- 1)
105104157
Civil Engineering
NOC:Hydration, Porosity and Strength of Cementitious Materials
Dr. Sudhir Misra
Video
IIT Kanpur
Select
Lecture-11 Portland Cement Based Paste System - I
Lecture 14 - Portland Cement Paste Based Systems - IV
Lecture 15- Portland Cement Based Paste System - V
Lecture 16 -18 Part 1 - Portland Cement Based Paste Systems - VI
Lecture 16- 18 Part 2 - Portland Cement Based Paste System - VII
Lecture 19 - Heat of hydration of Portland Cement
Lecture 20 - Mass Concrete
Lecture 21 and 22- Mineral Admixture - 1
Lecture 23 and 24 - Mineral Admixture - 2
Lecture 25-27 - Mineral Admixtures - 3
Lecture 28-30 - Mineral Admixtures - 4
Lecture 31 - From paste to concrete
Lecture 35 - Behavior under load
Lecture 36 - Curing of concrete
Lecture 37- Stress strain behaviour
Lecture 5 - Portland Cement (Contd.)
Lecture 6- INTRODUCTION (AGGREGATES): 1
Lecture 7- INTRODUCTION (AGGREGATES): 2
Lecture 8- INTRODUCTION (AGGREGATES): 3
Lecture 9- INTRODUCTION (CONCRETE MIXTURE PROPORTIONING STRATEGIES)
Lecture 10- INTRODUCTION (CHEMICAL ADMIXTURES)
Lecture 13- Portland Cement Based Paste System - III
Lecture 3 - Basic Properties of Concrete
Lecture 4 - Portland Cement
Lecture 33 - Pores and porosity - A revisit
Lecture 32 - Demonstration
Lecture 34 - Measuring permeability of concrete
Lecture 2 - Concrete - A Three Phase System
Lecture 38 - Durability of concrete - I
Lecture 12- Portland Cement Based Paste Systems - II
Lecture 1 - Introduction to the course
Lecture 39 - Durability of concrete - II - Specifications
Lecture 40- Evaluation and overview
105104160
Civil Engineering
NOC:Mechanics of Solids
Dr. Priyanka Ghosh
Video
IIT Kanpur
Select
Stress Components
Tutorial A
Tutorial B
Stresses due to Bending
Stresses due to Bending
Stresses due to Bending
Stresses due to Bending
Stresses due to Bending
Stresses due to Bending
Torsion
Tutorial 4
Tutorial 3
Differential Equation Relationship
Shear Force and Bending Moment Diagrams
Bending Moment
Tutorial on Friction.
Force Displacement Relationship.
Support Conditions
Tresca Criteria
True Stress Strain
Tutorial 2
Forces and Moments Transmitted by Slender Members
Elastic Stress Strain Relationship
Von Mises Yield Criteria
Strain Transformation
Strain Measurement
Tutorial
Tutorial on Concept of Strain.
Principal Stresses and Introduction to Concept of Strain
Normal Strain and Shear Strain
Construction of Mohrs Circle
State of Stresses
Mohrs Circle representation of plane stress
Concept of Stress
Plane Stress
Tutorial on Force Displacement Relationship and Geometric Compatibility -2
Tutorial on Force Displacement Relationship and Geometric Compatibility -3
Mechanism of belt around wheel.
Tutorial on Force Displacement Relationship and Geometric Compatibility -1
Hoop Stresses
Tutorial on Truss
Friction 2
Solutions of Plane Truss
Method of Sections
Stability of Truss
FBD of Frame Structures
Conditions of equilibrium in 2D and 3D
FBD with examples on modelling of typical supports and joints.
Course Handout
Analysis of Mechanical System
Deflections due to Bending
Integration of Moment Curvature Relation
Superposition Continued
Load Deflection Differential Equation
Castigliano’s Theorem
105104161
Civil Engineering
NOC:Principles of Construction Management
Dr. Sudhir Misra
Video
IIT Kanpur
Select
Lecture 20: Crashing of networks
Lecture 3: Overview of steps in execution of a project
Lecture 19: Resource leveling and allocation
Lecture 26: Safety organization and safety officer
Lecture 25: Implications of construction accidents
Lecture 24: Personal protective equipment
Lecture 23: Accidents in construction industry - II
Lecture 22: Accidents in construction industry - I
Lecture 21: Introduction to construction safety
Lecture 18: Project monitoring and control systems
Repayment of a loan
Introduction to planning and scheduling
Introduction to planning and scheduling (continued)
Project scheduling
Uncertainties in duration of activities -Using PERT in scheduling
Description of items
Lecture 8: Estimation of project cost
Lecture 9: Discussion on the case study of boundary wall
Lecture 12: Depreciation of construction equipment
Lecture 11: Economic decision making in construction projects
Lecture 10: Running account bills
Lecture 6: Estimating quantities
Lecture 4: Illustrative examples for evaluation of bids based on different schemes
Lecture 5: Resource management in construction projects
Lecture 1: Introduction to the course
Lecture 2: Interdisciplinary nature of modern construction projects
105104162
Civil Engineering
NOC:Foundation Design
Dr. Nihar Ranjan Patra
Video
IIT Kanpur
Select
Lecture 18D - Deep Foundation - Part 3
Lecture 18C - Deep Foundation - Part 2
Lecture 18B - Deep Foundation - Part 1
Lecture 18A - Earth Pressure Theories - Part 5
Lecture 16A - Earth Pressure Theories - Part 1
Lecture 15B - Design of Raft Foundation
Lecture 15A - Types of foundations (Combined Footing)
Lecture 12B - Design of foundation - Part 1
Lecture 14B - Design of Foundation - Part 5
Lecture 14A - Design of Foundation - Part 4
Lecture 13B - Design of Foundation - Part 3
Lecture 13A - Design of Foundation - Part 2
Lecture 11B - Stress distribution in soils - Part 5
Lecture 12A - Examples based on bearing capacity and settlement
Lecture 11A - Stress distribution in soils - Part 4
Lecture 10A - Stress distribution in soils - Part 2
Lecture 10B - Stress distribution in soils - Part 3
Lecture 9A - Settlement Analysis - Part 3
Lecture 9B - Stress distribution in soils - Part 1
Lecture-7B-Bearing Capacity Of Shallow Foundations-Part-6
Lecture 8A - Settlement Analysis - Part 1
Lecture 8B - Settlement Analysis - Part 2
Lecture-5B-Bearing Capacity Of Shallow Foundations-Part-2
Lecture-6A-Bearing Capacity Of Shallow Foundations-Part-3
Lecture-6B-Bearing Capacity Of Shallow Foundations-Part-4
Lecture-7A-Bearing Capacity Of Shallow Foundations-Part-5
Lecture 4B- Foundations
Lecture-5A-Bearing Capacity Of Shallow Foundations-Part-1
Lecture 3B- Subsoil Investigation or Site Investigation- Part - 6
Lecture 4A-Subsoil Investigation or Site Investigation- Part - 7
Lecture 2B - Subsoil Investigation or Site Investigation - Part - 4
Lecture 3A- Subsoil Investigation or Site Investigation- Part - 5
Lecture 1B - Subsoil Investigation or Site Investigation - Part - 2
Lecture 2A - Subsoil Investigation or Site Investigation - Part - 3
Lecture 1A - Subsoil Investigation or Site Investigation - Part - 1
Lecture 20A - Deep Foundation - Part 4
Lecture 20B - Deep Foundation - Part 5
105105039
Civil Engineering
Advanced Foundation Engineering
Dr. Kousik Deb
Video
IIT Kharagpur
Select
Introduction
Soil Exploration
Soil Exploration - Penetration Tests
Soil Exploration - Geophysical Exploration
Shallow Foundation - Introduction
Shallow Foundation : Bearing Capacity - I
Shallow Foundation : Bearing Capacity - II
Shallow Foundation : Bearing Capacity - III
Shallow Foundation : Bearing Capacity - IV
Shallow Foundation : Bearing Capacity - V
Shallow Foundation - Settlement Calculation - I
Shallow Foundation - Settlement Calculation - II
Shallow Foundation - Settlement Calculation - III
Design of Shallow Foundation
Design of Raft Foundation
Deep Foundation - Introduction
Pile Foundation - Load Carrying Capacity
Pile Foundation - Load Carrying Capacity - II
Pile Foundation Load Carrying Capacity - III and Settlement Calculation
Tension and Lateral Loaded Piles
Well Foundation
Well Foundation (Contd.)
Design of Retaining Wall
Design of Retaining Wall (Contd.)
Design of Sheet Piles
Design of Sheet Piles (Contd.)
Design of Sheet Piles (Contd.)
Design of Sheet Piles (Contd.)
Reinforced Earth
Reinforced Retaining Wall
Seismic Design of Retaining Wall
Seismic Design of Retaining Walls (Contd.)
Soil - Foundation Interaction
Soil - Foundation Interaction (Contd.)
Soil - Foundation Interaction (Contd.)
Soil - Foundation Interaction (Contd..)
Soil - Foundation Interaction (Contd.)
Soil - Foundation Interaction (Contd.)
Soil - Foundation Interaction (Contd..)
Soil - Foundation Interaction (Contd..)
105105041
Civil Engineering
Finite Element Analysis
Dr. D. Maity
Web
IIT Kharagpur
Select
Introduction
Basic Concepts of Finite Element Analysis
Introduction to Elasticity
Steps in Finite Element Analysis
Virtual Work and Variational Principle
Galerkin Method
Finite Element Method: Displacement Approach
Stiffness Matrix and Boundary Conditions
Natural Coordinates
Triangular Elements
Rectangular Elements
Lagrange and Serendipity Elements
Solid Elements
Isoparametric Formulation
Stiffness Matrix of Isoparametric Elements
Numerical Integration: One Dimensional
Numerical Integration: Two and Three Dimensional
Stiffness of Truss Members
Analysis of Truss
Stiffness of Beam Members
Analysis of Continuous Beam
Plane Frame Analysis
Analysis of Grid and Space Frame
Constant Strain Triangle
Linear Strain Triangle
Rectangular Elements
Numerical Evaluation of Element Stiffness
Computation of Stresses, Geometric Nonlinearity and Static Condensation
Axisymmetric Element
Finite Element Formulation of Axisymmetric Element
Finite Element Formulation for 3 Dimensional Elements
Introduction to Plate Bending Problems
Finite Element Analysis of Thin Plate
Finite Element Analysis of Thick Plate
Finite Element Analysis of Skew Plate
Introduction to Finite Strip Method
Finite Element Analysis of Shell
Finite Elements for Elastic Stability
Finite Elements in Fluid Mechanics
Dynamic Analysis
105105042
Civil Engineering
Ground Water Hydrology
Dr. V.R. Desai
Video
IIT Kharagpur
Select
Introduction : Ground Water (GW) Utilization and Historical Background, GW in hydrologic Cycle
Ground Water in Hydrologic Cycle (Contd.), Ground Water Budget, Ground Water Level Fluctuations and Environmental Influence
Ground water Level Fluctuations and Environmental Influence (Contd.) Literature/Data/Internet Resources
Ground Water :Literature/Data/Internet Sources
Occurrence and Movement of Ground Water : Origin and Age of Ground Water, Rock Properties Affecting Ground Water, Ground Water Column
Zones of Aeration and Saturation; Aquifers and their characteristics/classification
Aquifer Classification (Contd.), Ground water Basins and Springs; Dorcy's Law; Permeability
Determination pf Permeability :Heterogeneity and Anisotropy
Ground Water (GW) flowrates and flow directions; general flow equations through porous media
General Flow Equations Through Porous Media (Contd.), Dupuit's Assumptions
1-D Unconfined Ground water Flows; Steady Flow into Wells
Steady Flow into Wells (Contd.); Unsteady Flow into Wells
Unsteady Flow into Wells (Contd.)
Unsteady Radial Flow in Confined and Unconfined Aquifers
Unsteady Radial Flow in Leaky Aquifers (Contd.); Well Flow Near Aquifer Boundaries
Well Flow for Special Conditions; Partially Penetrating Wells; Horizontal Wells and Collector Wells;Multiple Well Systems
Well Completion;Well Development; Well Protection; Well Rehabilitation; Well testing for Yields
Well Protection/Rehabilitation/Testing for yield (Contd.); Artificial Ground Water Recharge : Concept and Methods
Concept and methods of Artificial Ground Water Recharge (Contd.); Recharge Mounds and Induced Recharge
Induced Recharge (Contd.); Wastewater recharge for reuse; Water spreading
Pollution and Quality Analysis of Ground Water : Sources of Pollution of GW-Municipal, Industrial,Agricultural and Miscellaneous
Ground Water Pollution from Industrial, Agricultural and Miscellaneous Sources (Contd.)
Ground Water Pollution from Miscellaneous Sources (Contd.), Attenuation and Underground Distribution of Pollutants
Potential Evaluation of Ground water Pollution; Physical/Chemical/Biological analysis of Ground Water quality; Criteria and measures of Ground water quality
Ground water salinity and samples ;Graphical representations of ground water quality
Graphical representations of ground water quality (Contd.), SURFACE/SUB-SURFACE INVESTIGATION OF GROUND WATER:Geological/geophysical exploration;Remote sensing/electrical resistivity methods
Surface Investigation of ground water (Contd.):Electrical resistivity seismic refraction/gravity/magnetic methods
Seismic refraction/gravity/magnetic methods (Contd.);Sub-surface investigation of ground water: Geographical/resistivity methods
Sub-surface investigation of ground water (Contd.): Geographical/resistivity/spontaneous potential/radiation of methods of logging
Radiation method of logging (Contd.); Temperature/caliper/fluid conductivity/fluid velocity/miscellaneous logging methods
Saline Water Intrusion in Aquifers:Occurence, Features affecting aquifers,Bodon - Ghyben - Hergberg Principle
Saline Water Intrusion in Aquifers : Bodon - Ghyben - Hergberg principle (Contd.), Analytical Solution of Saline Water Intrusion in Coastal Aquifer
Saline Water Intrusion in Aquifers : Analytical Solution of Saline Water Intrusion in Coastal Aquifer (Contd.), Density dependent salt water intrusion model
Saline Water Intrusion in Aquifers : Geochemical Investigations, Control of salt water intrusion, Practical Modeling of salt water intrusion
Modeling and Management of Ground Water - Ground Water Simulation Models, Ground Water Management Model : Confined Aquifer
Modeling and Management of Ground Water : Ground Water Management Model : Confined and Unconfined Aquifer, Linked Simulation - Optimization, Meta Model Based Approach
Modeling and Management of Ground Water : Contaminant Source Identification , Monitoring Network Design
Modeling and Management of Ground Water : Aquifer Yield and Ground Water Availability, Effects of Ground Water Development, Regional Scale Development of Ground Water
Modeling and Management of Ground Water : Conjunctive Surface - Subsurface Modeling of Overland Flow including flow through Vadose zone
Modeling and Management of Ground Water : Ground Water - Surface Water Interaction
105105043
Civil Engineering
Numerical Methods in Civil Engineering
Dr. A. Deb
Video
IIT Kharagpur
Select
Introduction to Numerical Methods
Error Analysis
Introduction to Linear Systems
Linear Systems - II
Linear Systems - III
Linear Systems - Error Bounds
Error Bounds and Iterative Methods for Solving Linear Systems
Iterative Methods for Solving Linear Systems
Iterative Methods - II
Iterative Methods - III
Iterative Methods for Eigen Value Extraction
Solving Nonlinear Equations
Solving Nonlinear Equations - II
Solving Multi Dimensional Nonlinear Equations
Solving Multi Dimensional Nonlinear Equations - II
ARC Length and Gradient Based Methods
Gradient Based Methods
Conjugate Gradient Method
Conjugate Gradient Method - II
Nonlinear Conjugate Gradient and Introduction to PDEs
Eigenfunction Solutions for the Wave Equation
Analytical Methods for Solving the Wave Equation
Analytical Methods for Hyoerbolic and Parabolic PDEs
Analytical Methods for Parabolic and Elliptic PDEs
Analytical Methods for Elliptic PDEs
Series Solutions for Elliptic PDE's and Introduction to Differential Operators
Differential Operators
Differential Operators - II
Differential Operators - III
Interpolation
Polynomial Fitting
Orthogonal Polynomials
Orthogonal Polynomials - II
Orthogonal Polynomials - III
Spline Functions
Orthogonal Basis Functions for Solving PDE's
Orthogonal Basis Functions for Solving PDE's - II
Integral Equations
Integral Equations - II
Integral Equations - III
105105045
Civil Engineering
Probability Methods in Civil Engineering
Dr. Rajib Maity
Video
IIT Kharagpur
Select
Introduction - Role of Probability in Civil Engineering
Random Events and Probability Concept
Set Theory and Set Operations
Axioms of Probability
Probability of Events
Concept and Defination of Random Variables
Probability Distribution of Random Variables
CDF and Descriptors of Random Variables
Further Descriptors of Random Variables
Discrete Probability Distribution
Probability Distribution of Continuous RVs
Probability Distribution of Continuous RVs (Contd...1)
Probability Distribution of Continuous RVs (Contd...2)
Functions of Single Random Variables
Functions of Random Variables - Different Methods
Functions of Random Variables - Different Methods (Contd.)
Expectation and Moments of Functions of RV
Expectation and Moments of Functions of RV (Contd.)
Joint Probability Distribution
Marginal Probability Distribution
Conditional Probability Distribution
Conditional Probability Distribution (Contd.)
Properties of Multiple Random Variables
Properties of Multiple Random Variables (Contd.)
MGF of Multivariate RVs and Multivariate Probability Distributions
Multivariate Distribution and Functions of Multiple Random Variables
Functions of Multiple Random Variables (Contd...1)
Functions of Multiple Random Variables (Contd...2)
Introduction to Copulas
Introduction to Copulas (Contd.)
Probability Models using Normal Distribution
Probability Models using Log Normal and Exponential Distribution
Probability Models using Gamma and Extreme Value Distribution
Probability Models using Discrete Probability Distributions
Sampling Distribution and Parameter Estimation
Sampling Distribution and Parameter Estimation (Contd.)
Hypothesis Testing
Goodness - of - fit tests
Regression Analyses and Correlation
Regression Analyses and Correlation (Contd.)
105105048
Civil Engineering
Wastewater management
Dr. M.M. Ghangrekar
Web
IIT Kharagpur
Select
Introduction
System of Sanitation
Sewer Material
Quantity Estimation of Sewage
Population Forecasting
Quantity Estimation of Storm Water
Hydraulic Design of Sewers and Storm Water Drains
Hydraulic Design of Sewers and Storm Water Drains (Contd.)
Hydraulic Design Of Sewers And Storm Water Drains (Contd.)
Sewer Appurtenances
Sewage And Storm water Pumping Stations
Classification Of Water Pollutants And Effects On Environment
Water Quality And Estimation Of Organic Content
Water Quality And Estimation Of Organic Content (Contd.)
Self Purification Of Natural Streams
Characteristics Of Sewage And Overview of Treatment Methods
Characteristics Of Sewage And Overview Of Treatment Methods (Contd.)
Screens
Grit Chamber
Grit Chamber (Contd.)
Primary Sedimentation Tank
Other Primary Treatment Systems
Secondary Treatment
Aerobic Secondary Treatment Of Wastewater
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater (Contd.)
Aerobic Secondary Treatment Of Wastewater
Secondary Sedimentation
Anaerobic Wastewater Treatment Processes
Anaerobic Wastewater Treatment Processes (Contd.)
Anaerobic Wastewater Treatment Processes (Contd.)
Sludge Management
Sludge Management (Contd.)
Tertiary Wastewater Treatment
Tertiary Wastewater Treatment (Contd.)
Onsite Sanitation
Onsite Sanitation (Contd.)
105105104
Civil Engineering
Design of Concrete Structures
Prof. J.N. Bandopadhyay
Web
IIT Kharagpur
Select
Objectives and Methods of Analysis and Design
Properties of Concrete and Steel
Philosophies of Design by Limit State Method
Computation of Parameters of Governing Equations
Determination of Neutral Axis Depth and Computation of Moment of Resistance
Numerical Problems on Singly Reinforced Rectangular Beams
Numerical Problems on Singly Reinforced Rectangular Beams (Continued)
Doubly Reinforced Beams ? Theory
Doubly Reinforced Beams ? Theory
Flanged Beams ? Theory
Flanged Beams ? Numerical Problems
Flanged Beams ? Numerical Problems (Continued)
Limit State of Collapse in Shear
Limit State of Collapse in Shear ? Numerical Problems
Bond, Anchorage, Development Length and Splicing
Torsion in Beams - Limit State of Collapse
Limit State of Serviceability
One-way Slabs
Two-way Slabs
Types and Design of Staircases
Definitions, Classifications, Guidelines and Assumptions
Short Axially Loaded Compression Members
Short Compression Members under Axial Load with Uniaxial Bending
Preparation of Design Charts
Design of Short Columns under Axial Load with Uniaxial Bending
Short Compression Members under Axial Load with Biaxial Bending
Slender Columns
Foundations ? Theory
Design of Foundations
Basic Principles, Theory and One-way Slabs
Nodal Forces and Two-way Slabs
Two-way Rectangular, Square, Triangular and Circular Slabs
Numerical Examples
Rectangular Beams under Flexure
Numerical Problems
Structural Requirements, Code Stipulations and Governing Equations
Numerical Problems
Redistribution of Moments ? Theory and Numerical Problems
Seismic Effects, Material Behaviour and General Principles of Earthquake Resistant Design of structures
Ductile Design and Detailing of Earthquake Resistant Structures
105105105
Civil Engineering
Design of Reinforced Concrete Structures
Prof. N. Dhang
Video
IIT Kharagpur
Select
Introduction - I
Materials
Different Methods of Design of Reinforced Concrete Structures
Working Stress Method
Working Stress Method (Contd...)
Limit State of Collapse Flexure
Limit State of Collapse Flexure - II
Design of Doubly Reinforced Beam Flexure - I
Design of Doubly Reinforced Beam Flexure - II
Design of Doubly Reinforced Beam Flexure
Limit State of Collapse Shear
Design for Shear
Design for Shear (Contd....)
Design of Slabs Part - 1
Design of Slabs Part - II
Design of Slabs Part - III
Design of Slabs Part - IV
Design of Slabs Part - V
Design of Columns Part - I
Design of Columns Part - II
Design of Columns Part - III
Design of Columns Part - IV
Design of Columns Part - V
Design of Footings Part - I
Design of Footings Part - II
Design of Staircases
Design for Torsion
Design for Torsion Part - II
Design of RC Slender Columns
Deflection of RC Beams
105105106
Civil Engineering
Engineering Geology
Dr. Debasis Roy
Video
IIT Kharagpur
Select
Introduction to Engineering Geology
Geologic Structures
Geologic Maps and Stratigraphic Sections
Remote Sensing in Engineering Geology
Physical Properties of Minerals
Crystallography and Optical Properties
Chemical Characteristics of Minerals
Origin And Types of Rocks
Origin And Types of Soils
Igneous Rocks
Sedimentary Rocks
Metamorphic Rocks
Weathering
Sediment Transport and Deposition
Introduction to Subsurface Exploration
Introduction to Subsurface Exploration
Sampling and Non - Intrusive Methods
Index Properties and Classification of Soils
Index Properties of Rock and Rock Mass
Stress-Strain Behavior of Soil and Rock
Stress-Strain Behavior of Soil and Rock - II
In-situ State of Stress
Geologic Considerations in Tunneling
Geologic Considerations in Dam Construction
Groundwater - Preliminaries
Groundwater Flow
Groundwater Flow - II
Groundwater Related Engineering Issues
Groundwater Over Utilization
Plate Tectonics
Plate Tectonics - 2 and Earthquake
Earthquake Hazard Assessment
Geologic Hazards - Seismicity and Volcanism
Geologic Hazards - Shoreline Processes
Geologic Hazards - Shoreline Processes
Geologic Hazards - Landslide Hazards - Zoning
Geologic Hazards Subsidence , Collapsible Soils
Preparation of Geologic Sections
Index testing of soil & rocks
Identification of minerals and rock samples
105105107
Civil Engineering
Introduction to Transportation Engineering
Dr. Bhargab Maitra
Video
IIT Kharagpur
Select
Transportation Engineering
Elements of Concern and Components
Traffic Stream Characteristics
Traffic Studies : Part - I
Traffic Studies : Part - II
Highway Capacity and Level of Service
Intersection Control and Signalization
Functional Classification, Design Elements
Cross Section Elements
Stopping Sight Distance And Decision Sight
Overtaking, Intermediate and Headlight Sight
Intersection Sight Distance - I
Intersection Sight Distance - II
Horizontal Alignment - I
Horizontal Alignment - II
Horizontal Alignment - III
Horizontal Alignment - IV
Horizontal Alignment - V
Horizontal Alignment - VI
Vertical Alignment - I
Vertical Alignment - II
Vertical Alignment - III
Highway Alignment
Principles of Pavement Design
Traffic Loading - I
Traffic Loading - II
Pavement Materials - I
Pavement Materials - II
Pavement Materials - III
Pavement Materials - IV
Pavement Materials - V
Design of Bituminous Mixes - I
Design of Bituminous Mixes - II
Analysis of Flexible Pavements
Analysis of Concrete Pavements
Flexible Pavement Design Indian Roads Congress
Flexible Pavement Design AASHTO Method - 1993
Concrete Pavement Design Indian Congress Method
Concrete Pavement Design PCA and AASHTO Methods
Pavement Evaluation and Rehabilitation
Overlay Design - IRC Method
105105108
Civil Engineering
Strength of Materials
Prof. S.K. Bhattacharyya
Video
IIT Kharagpur
Select
Introduction - Strength of Materials
Analysis of Stress - 1
Analysis of Stress - II
Analysis of Stress - III
Analysis of Stress - IV
Analysis of Stress - V
Analysis of Strain - I
Analysis of Strain - II
Analysis of Strain III
Analysis of Strain IV
Analysis of Strain V
Analysis of Strain VI
Analysis of Strain VII
Analysis of Strain - VIII
Application of Stress/Strain
Application of Stress / Strain
Application of Stress / Strain
Torsion - I
Torsion - II
Torsion - III
Torsion - IV
Bending of Beams - I
Bending of Beams - II
Bending of Beams - III
Bending of Beam - IV
Stresses in Beams - I
Stresses in Beams - II
Stresses in Beams - III
Stresses in Beams - IV
Deflection of Beams - I
Deflection of Beams - II
Deflection of Beams - III
Deflection of Beams - IV
Combined Stresses - I
Combined Stresses - II
Combined Stresses - III
Stability of Columns - I
Stability of Columns - II
Springs - I
Springs - II
105105109
Civil Engineering
Structural Analysis II
Prof. Sudhir Kumar Barai
Web
IIT Kharagpur
Select
General Introduction
Principle of Superposition,Strain Energy
Castigliano's Theorems
Theorem of Least Work
Virtual Work
Engesser?s Theorem and Truss Deflections by Virtual Work Principles
The Force Method of Analysis:An Introduction
The Force Method of Analysis: Beams
The Force Method of Analysis:Beams (Continued)
The Force Method of Analysis: Trusses
The Force Method of Analysis: Frames
The Three-Moment Equations-I
The Three-Moment Equations-Ii
The Slope-Deflection Method: An Introduction
The Slope-Deflection Method: Beams (Continued)
The Slope-Deflection Method: Frames Without Sidesway
The Slope-Deflection Method: Frames with Sidesway
The Moment-Distribution Method: Introduction
The Moment-Distribution Method: Statically Indeterminate Beams Withsupport Settlements
The Moment-Distribution Method: Frames without Sidesway
The Moment-Distribution Method: Frames with Sidesway
The Multistory Frames with Sidesway
The Direct Stiffness Method: An Introduction
The Direct Stiffness Method: Truss Analysis
The Direct Stiffness Method: Truss Analysis (Continued)
The Direct Stiffness Method: Temperature Changes and Fabrication Errors in Truss Analysis
The Direct Stiffness Method: Beams
The Direct Stiffness Method: Beams (Continued)
The Direct Stiffness Method: Beams (Continued)
The Direct Stiffness Method: Plane Frames
Cables
Three Hinged Arch
Two-Hinged Arch
Symmetrical Hingeless Arch
Indeterminate Trusses and Industrial Frames
Building Frames
Moving Load and Its Effects on Structural Members
Influence Lines for Beams
Influence Lines for Beams (Contd.)
Influence Lines for Simple Trusses
105105110
Civil Engineering
Water Resources Engineering
Dr. Dhrubajyoti Sen
Web
IIT Kharagpur
Select
Surface and Ground Water Resources
Concepts for Planning Water Resources Development
National Policy For Water Resources Development
Planning and Assessment of Data for Project Formulation
Precipitation And Evapotranspiration
Runoff and Infiltration
Rainfall Runoff Relationships
Design Flood Estimation
Subsurface Movement of Water
Principles of Ground Water Flow
Well Hydraulics
Flow Dynamics in Open Channels and Rivers
Geomorphology of Rivers
Sediment Dynamics in Alluvial Rivers and Channels
India?s Irrigation Needs and Strategies for Development
Soil Water Plant Relationships
Estimating Irrigation Demand
Types of Irrigation Schemes and Methods of Field Water Application
Traditional Water Systems and Minor Irrigation Schemes
Canal Systems for Major and Medium Irrigation Schemes
Design of Irrigation Canals
Conveyance Structures for Canal Flows
Regulating Structures for Canal Flows
Distribution and Measurement Structures for Canal Flows
Structures for Flow Diversion ? Investigation Planning and Layout
Design of the Main Diversion Structure of a Barrage
Design of Barrage Appurtenant Structures and Rules for Barrage Operation
Structures for Water Storage ? Investigation, Planning and Layout
Planning Of Water Storage Reservoirs
Design and Construction of Concrete Gravity Dams
Design and Construction of Concrete Gravity Dams
Spillways and Energy Dissipators
Reservoir Outlet Works
Gates and Valves for Flow Control
Principles of hydropower engineering
Hydropower water conveyance system
Hydropower equipment and generation stations
River training and riverbank protection works
Drought and flood management
Remote sensing and GIS for Water resource management
105105138
Civil Engineering
Probability Methods in Civil Engineering
Dr. Rajib Maity
Web
IIT Kharagpur
Select
Probability and its role in Civil Engineering
Random Events and Probability Concept
Set Theory and Event Operations
Axioms of Probability
Probability of Events
Concept and Definitions of Random Variables
Probability Distribution of Random Variables
CDF and Descriptors of Random Variables
Descriptors of Random Variables (contd.)
Some Standard Discrete Probability Distributions
Some standard Continuous Probability distributions
Continuous Probability distribution (contd.)
Continuous Probability distribution (contd.)
Functions of Single Random Variables
Functions of Single Random Variable-Different Methods
Functions of Single Random Variable-Different Methods-2
Expectation and Moments of Functions of Random Variable
Expectation and Moments of Functions of Random Variable
Joint Probability Distribution
Joint Probability Distribution
Conditional Probability Distribution
Conditional Probability Distribution 2
Properties of Multiple Random Variables
Properties of Multiple Random Variables-2
Moment Generating Function of Multivariate RVs and Multivariate Probability Distributions
Multivariate Distribution and Functions of Multiple Random Variables
Functions of Multiple Random Variables-2
Functions of Multiple Random Variables-3
Introduction to Copulas
Introduction to Copulas-2
Probability Models using Normal Distribution
Probability Models using Log Normal and Exponential Distribution
Probability Models using Gamma and Extreme Value Distribution
Probability Models using Discrete Probability Distributions
Sampling Distribution and Parameter Estimation
Sampling Distribution and Parameter Estimation …contd.
Hypothesis Testing
Goodness of fit tests
Regression Analyses and Correlation
Regression Analyses and Correlation…contd.
105105150
Civil Engineering
NOC:Probability Methods in Civil Engineering
Dr. Rajib Maity
Video
IIT Kharagpur
Select
Lec-05 Concept and definition of Random variables
Lecture 4: Probability of Events
Lec-06:Probability distribution of random variables
Lecture 3: Axioms of Probability
Lecture - 2: Set Theory and Set Operations
Lecture - 1: Random Events and Probability Concept
Lecture 7: CDF and Descriptors of Random Variables
Lecture 8: Further Descriptors of Random Variables
Lecture 9 : Discrete Probability Distribution
Lecture 10: Probability Distribution of Continuous RVs
Lecture 11: Probability Distribution of Continuous RVs (Contd...1)
Lecture 12: Probability Distribution of Continuous RVs (Contd...2)
Lecture 13: Functions of Single Random Variables
Lecture 14: Functions of Different Variables - Different Methods
Lecture 15 : Functions of Random Variables : Different Methods (Contd.)
Lecture 16 : Probability Models using Normal Distribution
Lecture 17 : Probability Models using Log Normal and Exponential Distribution
Lecture 18 : Probability Models using Gamma and Extreme Value Distribution
Lecture 19 : Probability Models using Discrete Probability Distributions
Lecture 20 : Sampling Distribution and Parameter Estimation
Lecture 21 : Sampling Distribution and Parameter Estimation (Contd.)
Lecture 22: Hypothesis Testing
Lecture 23: Goodness of Fit-Tests
Lecture 24 : Regression Analyses and Correlation
Lecture 25 : Regression Analyses and Correlation (Contd.)
105105156
Civil Engineering
NOC:Visual Semiotics for Visual Communication
Prof. Mainak Ghosh
Video
IIT Kharagpur
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Lecture 15 : Visual Semantics for Visual Communication (Contd.)
Lecture 16 : Visual Semantics for Visual Communication (Contd.)
Lecture 13 : Conceptual Model and Affordances
Lecture 14: Visual Semantics for Visual Communication (Contd.)
Lecture 12: Visual Semantics for Visual Communication (Contd.)
Lecture 11: Visual Semantics for Visual Communication (Contd.)
Lecture 10 : Visual Semantics for Visual Communication (Contd.)
Lecture 9: Introduction to Millimeter-Wave Technology
Lecture 8: Visual Semantics for Visual Communication (Contd.)
Lecture 7: Visual Semantics for Visual Communication (Contd.)
Lecture 5: Introduction to Millimeter-Wave Technology (Contd.)
Lecture 2: Visual Semantics for Visual Communication (Contd.)
Lecture 1: Visual Semantics for Visual Communication
Lecture 17 : Visual Semantics for Visual Communication (Contd.)
Lecture 6: Visual Semantics for Visual Communication (Contd.)
Lecture 4: Visual Semantics for Visual Communication (Contd.)
Lecture 3: Visual Semantics for Visual Communication (Contd.)
Lecture 18 : Visual Semantics for Visual Communication (Contd.)
Lecture 19 : Visual Semantics for Visual Communication (Contd.)
Lecture 20 : Visual Semantics for Visual Communication (Contd.)
105105157
Civil Engineering
NOC:Sustainable Engineering Concepts And Life Cycle Analysis
Prof. Brajesh Kumar Dubey
Video
IIT Kharagpur
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Lecture 31 : Design for Sustainability
Lecture 11: Environmental Data Collection and LCA Methodology
Lecture 14: LCA Methodology
Lecture 16: LCA - A Detailed Methodology
Lecture 17: LCA - A Detailed Methodology (Contd.)
Lecture 18: LCA Benefits and Drawbacks
Lecture 19: History of LCA
Lecture 20: The ISO Framework
Lecture 21: Unit Process, Data and LCI Databases
Lecture 22: Unit Process and System Boundary (Contd.)
Lecture 23: Inventory Data and LCIA
Lecture 24: LCIA
Lecture 25: LCA Interpretation
Lecture 37 : Summary and Case Studies (Contd.)
Lecture 7: RISK Assessment - Toxicology
Lecture 28: Chemical Release in Environment
Lecture 29: Green Sustainable Materials
Lecture 30: Green Sustainable Materials (Contd.)
Lecture 39 : Tutorial I
Lecture 36 : Summary and Case Studies
Lecture 10: Environmental Risk Assessment
Lecture 33 : Design for Sustainability (Contd.)
Lecture 34 : Sustainable Engineering Design Principles
Lecture 12: Environmental Data Collection and LCA Methodology (Contd.)
Lecture 13: Environmental Data Collection and LCA Methodology (Contd.)
Lecture 8: RISK Assessment Methods
Lecture 9: RISK Assessment Methods (Contd.)
Lecture 32 : Design for Sustainability (Contd.)
Lecture 27: Key Points of a Good LCA and Example LCA
Lecture 3: LCA and Sustainability
Lecture 4: LCA and Environmental Systems
Lecture 5: LCA and Water, Food and Energy
Lecture 38 :Summary and Case Studies (Contd.)
Lecture 35 : Sustainable Engineering Design Principles (Contd.)
Lecture 6: RISK Assement and LCA Frameworks
Lecture 40 : Tutorial II
Lecture 26: ISO 14040
Lecture 14: Environmental Data Collection and LCA Methodology (Contd.)
Lecture 2: Life Cycle Assessment - Introduction
Lecture 1: Life Cycle Assessment - Introduction
105105160
Civil Engineering
NOC:Integrated Waste Management for a Smart City
Prof. Brajesh Kumar Dubey
Video
IIT Kharagpur
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Lecture 21 : Waste Collection and Transport
Lecture 22 : Waste Collection and Transport (Contd.)
Lecture 23 : Waste Collection and Transport (Contd.)
Lecture 24 : Waste Collection and Transport (Contd.)
Lecture 25 : Waste Collection and Transport (Contd.)
Lecture 26 : Collection System
Lecture 27 : Collection System (Contd.)
Lecture 28 : Review of MSW Management in Proposed Smart Cities
Lecture 29 : Biological Treatment of Waste
Lecture 30 : Biological Treatment of Waste (Contd.)
Lecture 31 : Biological Treatment of Waste (Contd.)
Lecture 32 : Biological Treatment of Waste (Contd.)
Lecture 33 : Biological Treatment of Waste (Contd.)
Lecture 34 : Thermal Treatment
Lecture 35 : Thermal Treatment (Contd.)
Lecture 18 : Storage of Solid Waste
Lecture 19 : MSW Collection System
Lecture 11 : MSW Characteristics - Thermal Properties and Chemical Composition
Lecture 12 : Chemical Analysis Procedure
Lecture 13 : Chemical Analysis Procedure (Contd.)
Lecture 14 : Working with Data and Statistical Methods
Lecture 15 : Waste Management Rules 2016
Lecture 16 : Waste Management Rules 2016 (Contd.)
Lecture 10 : Municipal Solid Waste Chracteristics and Quantities (Contd.)
Lecture 1 : Introduction
Lecture 2 : Introduction (Contd.)
Lecture 3 : Introduction (Contd.)
Lecture 4 : Introduction (Contd.)
Lecture 5 : Introduction (Contd.)
Lecture 6 : Introduction (Contd.)
Lecture 7 : Municipal Solid Waste Chracteristics and Quantities
Lecture 17 : Swachh Bharat Mission and Smart Cities Program Overview
Lecture 9 : Municipal Solid Waste Chracteristics and Quantities (Contd.)
Lecture 8 : Municipal Solid Waste Chracteristics and Quantities (Contd.)
Lecture 20 : MSW Collection System (Contd.)
Lecture 46 : Landfill Disposal (Contd.)
Lecture 47 : Landfill Disposal (Contd.)
Lecture 48 : Construction and Demolition Waste Management
Lecture 49 : Construction and Demolition Waste Management (Contd.)
Lecture 50 : Construction and Demolition Waste Management (Contd.)
Lecture 51: Construction and Demolition Waste Management (Contd.)
Lecture 52: Construction and Demolition Waste Management (Contd.)
Lecture 53: E-Waste Management
Lecture 54: E-Waste Management (Contd.)
Lecture 55: E-Waste Management (Contd.)
Lecture 45 : Landfill Disposal (Contd.)
Lecture 44 : Landfill Disposal (Contd.)
Lecture 43 : Landfill Disposal (Contd.)
Lecture 42 : Landfill Disposal (Contd.)
Lecture 41 : Landfill Disposal (Contd.)
Lecture 40 : Landfill Disposal
Lecture 39 : Thermal Treatment (Contd.)
Lecture 38 : Thermal Treatment (Contd.)
Lecture 37 : Thermal Treatment (Contd.)
Lecture 36 : Thermal Treatment (Contd.)
Lecture 56 : E-Waste Management (Contd.)
Lecture 57 : E-Waste Management (Contd.)
Lecture 58 : E-Waste Management (Contd.)
Lecture 59 : E-Waste Management (Contd.)
Lecture 60 : E-Waste Management (Contd.)
Lecture 61 : Tutorial - I
Lecture 62 : Tutorial - II
105105161
Civil Engineering
NOC:Computational hydraulics
Dr. Anirban Dhar
Video
IIT Kharagpur
Select
Lecture 1 : Introduction to Computational Hydraulics
Lecture 2 : Problem Definition and Governing Equations (GE)
Lecture 3 : Classification of Problems based on Initial Condition (IC) and/or Boundary Conditions (BC)
Lecture 4 : Classification of Differential Equations
Lecture 5 : Numerical Methods : Overview
Lecture 6 : Finite Difference Approximation
Lecture 9 : Partial Differential Equation : BVP
Lecture 10 : Partial Differential Equation : IBVP
Lecture 11 : Partial Differential Equation : Numerical Stability of IBVP
Lecture 12 : Partial Differential Equation : Numerical Stability of One Dimensional PDE
Lecture 13 : Finite Volume Method - Overview
Lecture 14 : Finite Volume Method - BVP
Lecture 15 : Finite Volume Method - IBVP
Lecture 16 : Finite Volume Method - Conservation Law
Lecture 17 : Upwind Approach
Lecture 29 : Algebraic Equation : Gauss - Seidel Method
Lecture 30 : Algebraic Equation : Newton Raphson Method
Lecture 31 : One-Dimensional Flow
Lecture 32 : Steady Two-Dimensional Flow
Lecture 33 : Unsteady Two-Dimensional Flow using Finite Difference Method
Lecture 21: Mesh-Tree Method : Polynomial Interpolation Method
Lecture 28 : Algebraic Equation : Jacobis Method
Lecture 23 : Mesh-Free Method : Space-Time Moving Least Squares Method
Lecture 20 :
Lecture 26 : Algebraic Equation : LU Decomposition Method
Lecture 27 : Algebraic Equation : Tri Diagonal Matrix Method
Lecture 22 : Mesh -Free Method : Moving Least Squares Method
Lecture 19 :
Lecture 24 : Numerical Method : Matrix Structure and Scilab
Lecture 25 : Algebraic Equation:Gauss Elimination Method
Lecture 18 : Godunov Approach
Lecture 7 : Ordinary Differential Equation : IVP
Lecture 40 : Steady Channel Flow : Channel Network without reverse Flow
Lecture 41 : Steady Channel Flow : Channel Network without reverse Flow (Contd.)
lecture 42 : Steady Channel Flow : Channel Network with reverse Flow
Lecture 43 : Steady Channel Flow : Channel Network with reverse Flow (Contd.)
Lecture 39 :
Lecture 38 :
Lecture 37 :
Lecture 36 :
Lecture 35 :
Lecture 34 :
Lecture 8 : Ordinary Differential Equation : BVP
Lecture 44
Lecture 45
Lecture 46
Lecture 47
Lecture 48
Lecture 49 : Unsteady Flow in Pipes
Lecture 50 : Surface Water and Ground Water Interaction
Lecture 51 : Course Summary
105105162
Civil Engineering
NOC:Design of steel structures
Prof. Damodar Maity
Video
IIT Kharagpur
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Lecture 29 Compression Members
Lecture 30 Design Strength of Compression Members
Lecture 32: Compressive Strength of Angle Struts
Lecture 26 Design of Gusset Plate
Lecture 27 Lug Angles
Lecture 28 Splices in Tension Members
Lecture 18: Eccentric Connection (Load Lying Perpendicular to Plane of Welded Joint)
Lecture 19 : Tension Members and Net Area
Lecture 20 : Calculation of Net Area in Tension Members
Lecture 21: Net area, Staggered bolt, Chain bolt, Staggered pitch, Deduction of area
Lecture 22: Strength Calculation of Tension Members
Lecture 23: Strength of Tension Members with Weld Connection
Lecture 10: Design of Fillet Welds
Lecture 11: Design of Butt Welds
Lecture 12: Design of Plug and Slot Weld
Lecture 13: Eccentric Connection (Load Lying in Plane of Bolted Joint)
Lecture 14: Design of Eccentric Connection (Load Lying in Plane of Bolted Joint)
Lecture 15 : Eccentric Connection (Load Lying in Plane of Welded Joint)
Lecture 33: Compressive Strength of Double Angles
Lecture 34: Design of Compression Members
Lecture 31 : Compressive Strength
Lecture 25 : Design Calculation for Tension Members
Lecture 17: Design of Eccentric Connection (Load Lying Perpendicular to Plane of Bolted Joint)
Lecture 5 : Introduction to Bolt Connections
Lecture 6 : Design of Ordinary Black Bolts
Lecture 7: Worked out Examples on Design of Ordinary Black Bolts
Lecture 1 : Introduction to Design of Steel Structures (Limit State Method)
Lecture 2: Steel as a Structural Material
Lecture 3: Limit State Design
Lecture 9: Weld connection
Lecture 16: Eccentric Connection (Load Lying Perpendicular to Plane of Bolted Joint)
Lecture 35 : Design of Builtup Compression Members
Lecture 8 : Design of High Strength Friction Grip Bolts
Lecture 4 : Introduction to Connections
Lecture 57
Lecture 56
Lecture 55
Lecture 54
Lecture 53
Lecture 52
Lecture 46 : Failure Modes of Flexural Members
Lecture 47 : Laterally Supported Beams
Lecture 48 : Design of Laterally Supported Beams
Lecture 49 : Laterally Supported Beams with High Shear
Lecture 50 :Laterally Unsupported Beams
Lecture 51 : Strength Calculation of Laterally Unsupported Beams
Lecture 45 : Introduction to Flexural Members: Beams
Lecture 44: Design of Column Splices due to Shear
Lecture 43 : Design of Column Splices
Lecture 42 : Design of Batten Plates using Weld Connection
Lecture 41 : Design of Batten Plates using Bolt Connection
Lecture 40 : Batten Plates
Lecture 39 : Design of Double Lacing System
Lecture 38 : Connection Design of Lacing Systems
Lecture 37 : Design of Lacing Systems
Lecture 36 : Lacing Systems
Lecture 24: Steps for Design of Tension Members
Lecture 58 : Worked out Example for Gantry Girder
Lecture 59 : Slab Base
Lecture 60 : Design of Slab Base
Lecture 61 : Eccentrically Loaded Base Plate
Lecture 62 : Gusset Base
Lecture 63 : Design of Gusset Base
105105165
Civil Engineering
NOC:Reinforced Concrete Road Bridges
Prof. Nirjhar Dhang
Video
IIT Kharagpur
Select
Lecture 19: Design of RCC T Beam Bridge (Part IV)
Lecture 20: Summary and Closure
Lecture 18: Design of RCC T Beam Bridge (Part III)
Lecture 14: Design of Slab Bridges (Part VI)
Lecture 15: Abutment
Lecture 16: Design of RCC T Beam Bridge (Part I)
Lecture 17: Design of RCC T Beam Bridge (Part II)
Lecture 12: Design of Slab Bridges (Part IV)
Lecture 13: Design of Slab Bridges (Part V)
Lecture 9: Design of Slab Bridges (Part I)
Lecture 10: Design of Slab Bridges (Part II)
Lecture 11: Design of Slab Bridges (Part III)
Lecture 7: Limit State Method of Design as per IS456:2000
Lecture 8: Limit State Method of Design as per IRC 112:2011
Lecture 6: Working Stress Method
Lecture 3 : General Features of Design
Lecture 4 : IRC Loading
Lecture 5 : Design Codes
Lecture 2 : Classification of Bridges
Lecture 1 : Introdudction
105105166
Civil Engineering
NOC:Structural analysis I
Prof. Amit Shaw
Video
IIT Kharagpur
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Lecture 46 : Analysis of Statically Indeterminate Structures by Force Method (Contd.)
Lecture 47 : Analysis of Indeterminate Structures by Displacement Methods
Lecture 48 : Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 49 : Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 50 : Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 51 : Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 52 : Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 53: Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 61 : Direct Stiffness Method (Contd.)
Lecture 57 : Direct Stiffness Method
Lecture 58 : Direct Stiffness Method (Contd.)
Lecture 40 : Analysis of Statically Indeterminate Structures: Method of Consistent Deformations (Contd.)
Lecture 41 : Analysis of Statically Indeterminate Structures: Method of Consistent Deformations (Contd.)
Lecture 42 : Analysis of Statically Indeterminate Structures by Force Method
Lecture 43 : Analysis of Statically Indeterminate Structures by Force Method (Contd.)
Lecture 44 : Analysis of Statically Indeterminate Structures by Force Method (Contd.)
Lecture 45 : Analysis of Statically Indeterminate Structures by Force Method (Contd.)
Lecture 56: Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 38 : Analysis of Statically Indeterminate Structures: Method of Consistent Deformations
Lecture 33 : Analysis of Statically Indeterminate Structures
Lecture 34 : Analysis of Statically Indeterminate Structures (Contd.)
Lecture 35 : Analysis of Statically Indeterminate Structures (Contd.)
Lecture 36 : Analysis of Statically Indeterminate Structures (Contd.)
Lecture 37 : Analysis of Statically Indeterminate Structures (Contd.)
Lecture 54: Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 39 : Analysis of Statically Indeterminate Structures: Method of Consistent Deformations (Contd.)
Lecture 25 : Deflection of Beams and Frames (Contd.)
Lecture 31 : Influence Line Diagram and moving Loads (Contd.)
Lecture 30 : Influence Line Diagram and moving Loads (Contd.)
Lecture 29 : Influence Line Diagram and moving Loads (Contd.)
Lecture 28 : Influence Line Diagram and moving Loads
Lecture 27 : Deflection of Beams and Frames (Contd.)
Lecture 26 : Deflection of Beams and Frames (Contd.)
Lecture 24 : Deflection of Beams and Frames (Contd.)
Lecture 23 : Deflection of Beams and Frames (Contd.)
Lecture 22 : Deflection of Beams and Frames (Contd.)
Lecture 14 : Analysis of Statically Determinate Structures: Method of Virtual Work (Contd.)
Lecture 12 : Analysis of Statically Determinate Structures: Method of Virtual Work
Lecture 20 : Deflection of Beams and Frames (Contd.)
Lecture 21: Deflection of Beams and Frames (Contd.)
Lecture 18 : Deflection of Beams and Frames (Contd.)
Lecture 19 : Deflection of Beams and Frames (Contd.)
Lecture 16: Analysis of Statically Determinate Structures: Method of Virtual Work (Contd.)
Lecture 17 : Deflection of Beams and Frames
Lecture 15 : Analysis of Statically Determinate Structures: Method of Virtual Work (Contd.)
Lecture 13 : Analysis of Statically Determinate Structures: Method of Virtual Work (Contd.)
Lecture 2 : Idealization of Structures, Threats and Responses
Lecture 9 : Analysis of Truss: Method of Joints (Contd.)
Lecture 10 : Analysis of Truss: Method of Sections
Lecture 11 : Analysis of Truss: Method of Sections (Contd.)
Lecture 7 : Analysis of Statically Determinate Structures: Truss
Lecture 8 : Analysis of Truss: Method of Joints
Lecture 5 : Review of Bending Moment and Shear Force Diagram of Beam
Lecture 6 : Tutorial - I
Lecture 3 : Static Equilibrium
Lecture 4 : Determinate and Indeterminate Structures
Lecture 1 : Introduction
Lecture 32 : Influence Line Diagram and moving Loads (Contd.)
Lecture 55: Analysis of Indeterminate Structures by Displacement Methods (Contd.)
Lecture 60 : Direct Stiffness Method (Contd.)
Lecture 59 : Direct Stiffness Method (Contd.)
105106049
Civil Engineering
Advanced Solid Mechanics
Dr. U. Saravanan
Web
IIT Madras
Select
1.1 Basic Concepts in Mechanics
1.2 Basic Equations in Mechanics
1.3 Classification of the Response of Materials
1.4 Solution to Boundary Value Problems
1.5 Summary
2.1 Overview
2.2 Algebra of vectors
2.3 Algebra of second order tensors
2.4 Algebra of fourth order tensors
2.5 Eigenvalues, eigenvectors of tensors
2.6 Transformation laws
2.7 Scalar, vector, tensor functions
2.8 Gradients and related operators
2.9 Integral theorems
2.10 Summary
2.11 Self-Evaluation
3.1 Overview
3.2 Body
3.3 Deformation Gradient
3.4 Lagrangian and Eulerian description
3.5 Displacement, velocity and acceleration
3.6 Transformation of curves, surfaces and volume
3.7 Properties of the deformation tensors
3.8 Strain Tensors
3.9 Normal and shear strain
3.10 Homogeneous Motions
3.11 Compatibility condition
3.12 Summary
3.13 Self-Evaluation
4.1 Overview
4.2 Traction vectors and stress tensors
4.3 Normal and shear stresses
4.4 Principal stresses and directions
4.5 Stresses on a Octahedral plane
4.6 Examples of state of stress
4.7 Other stress measures
4.8 Summary
4.9 Self-Evaluation
5.1 Overview
5.2 System
5.3 Conservation of Mass
5.4 Conservation of momentum
5.5 Summary
5.6 Self-Evaluation
6.1 Overview
6.2 Definition of elastic process
6.3 Restrictions on constitutive relation
6.4 Isotropic Hooke’s law
6.5 Material parameters
6.6 Restriction on material parameters
6.7 Internally constraint materials
6.8 Orthotropic Hooke’s law
6.9 Summary
6.10 Self-Evaluation
7.1 Overview
7.2 Formulation of boundary value problem
7.3 Techniques to solve boundary value problems
7.4 Illustrative example
7.5 General results
7.6 Summary
7.7 Self-Evaluation
8.1 Overview
8.2 Symmetrical bending
8.3 Asymmetrical bending
8.4 Shear center
8.5 Summary
8.6 Self-Evaluation
9.1 Overview
9.2 Twisting of thick walled closed section
9.3 Twisting of solid open section
9.4 Twisting of hollow section
9.5 Summary
9.6 Self-Evaluation
10.1 Overview
10.2 Winkler-Bach formula for curved beams
10.3 2D Elasticity solution for curved beams
10.4 Summary
10.5 Self-Evaluation
11.1 Overview
11.2 General formulation
11.3 Example 1: Point load
11.4 Example 2: Concentrated moment
11.5 Example 3: Uniformly distributed load
11.6 Summary
11.7 Self-Evaluation
Bibliography
105106050
Civil Engineering
Advanced Structural Analysis
Prof. Devdas Menon
Video
IIT Madras
Select
Lecture - 1 Review of Basic Structural Analysis I
Lecture - 2 Review of Basic Structural Analysis I
Leture - 3 Review of Basic Structural Analysis I
Leture - 4 Review of Basic Structural Analysis I
Leture - 5 Review of Basic Structural Analysis I
Leture - 6 Review of Basic Structural Analysis I
Lecture - 7 Review of Basic Structural Analysis II
Lecture - 8 Review of Basic Structural Analysis II
Lecture - 9 Review of Basic Structural Analysis II
Lecture - 10 Review of Basic Structural Analysis II
Lecture - 11 Review of Basic Structural Analysis II
Lecture - 12 Review of Basic Structural Analysis II
Lecture - 13 Review of Basic Structural Analysis II
Lecture - 14 Review of Basic Structural Analysis II
Lecture - 15 Review of Basic Structural Analysis II
Lecture - 16 Review of Basic Structural Analysis II
Lecture - 17 Basic Matrix Concepts
Lecture - 18 Basic Matrix Concepts
Lecture - 19 Basic Matrix Concepts
Lecture - 20 Basic Matrix Concepts
Lecture - 21 Basic Matrix Concepts
Lecture - 22 Matrix Analysis of Structures with Axial Elements
Lecture - 23 Matrix Analysis of Structures with Axial Elements
Lecture - 24 Matrix Analysis of Structures with Axial Elements
Lecture - 25 Matrix Analysis of Structures with Axial Elements
Lecture - 26 Matrix Analysis of Structures with Axial Elements
Lecture - 27 Matrix Analysis of Beams and Grids
Lecture - 28 Matrix Analysis of Beams and Grids
Lecture - 29 Matrix Analysis of Beams and Grids
Lecture - 30 Matrix Analysis of Beams and Grids
Lecture - 31 Matrix Analysis of Beams and Grids
Lecture - 32 Matrix Analysis of Beams and Grids
Lecture - 33 Matrix Analysis of Plane and Space Frames
Lecture - 34 Matrix Analysis of Plane and Space Frames
Lecture - 35 Matrix Analysis of Plane and Space Frames
Lecture - 36 Matrix Analysis of Plane and Space Frames
Lecture - 37 Matrix Analysis of Plane and Space Frames
Lecture - 38 Analysis of elastic instability and second-order effects
Lecture - 39 Analysis of elastic instability and second-order effects
Lecture - 40 Analysis of elastic instability and second-order effects
Lecture - 41 Life beyond Structures & Analysis
105106051
Civil Engineering
Finite Element Analysis
Dr. B.N. Rao
Video
IIT Madras
Select
Lecture 1
Lecture 2
Lecture 3
Lecture 4
Lecture 5
Lecture 6
Lecture 7
Lecture 8
Lecture 9
Lecture 10
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 25
Lecture 26
Lecture 27
Lecture 28
Lecture 29
Lecture 30
Lecture 31
Lecture 32
Lecture 33
Lecture 34
Lecture 35
Lecture 36
Lecture 37
Lecture 38
Lecture 39
Lecture 40
105106052
Civil Engineering
Geosynthetics and Reinforced Soil Structures
Dr. K. Rajagopal
Video
IIT Madras
Select
Introduction & Need for Geosynthetics
Types and Functions of Geosynthetics
Polymers in Geosynthetics and Manufacturing Techniques
Strength Analysis of Reinforced Soils - I
Strength Analysis of Reinforced Soils – II
Testing of Geosynthetics-I
Testing of Geosynthetics-II
Testing of Geosynthetics-III
Different Types of Soil Retaining Structures
Construction Aspects of Geosynthetic Reinforced Soil Retaining Walls
Design Codes for Reinforced Soil Retaining Walls
External Stability Analysis of Reinforced Soil Retaining Walls
Seismic Loads and Internal Stability Analysis of Reinforced Soil Walls
Testing Requirements for Reinforced Soil Retaining Walls
Design Example of Reinforced Soil Retaining Walls-I
Design Example of Reinforced Soil Retaining Walls-II
Design Example of Reinforced Soil Retaining Walls-III
Design Example of Reinforced Soil Retaining Walls-IV
Case Study of Construction of Very High Tiered Reinforced Soil Walls
Controlled Yielding to Reduce Lateral Earth Pressures on Rigid Walls
Geosynthetic Reinforced Soil Embankments-I
Geosynthetic Reinforced Soil Embankments-II
Two-Part Wedge Analysis of Reinforced Soil Embankments
Soil Embankments Supported on Geocell Mattresses
Accelerated Pre-Consolidation of Soft Clay Soils Using Geosynthetics
Geosynthetic Reinforced Pile Systems for High Embankments
Geosynthetic Encasement for Stronger and Stiffer Stone Columns
Response of Footings Resting on Reinforced Foundation Soils
Bearing Capacity Analysis of Footings Resting on Reinforced Foundation Soils
Design and Construction of Container Yards Using Geosynthetics
Geosynthetics in Flexible Pavements – I
Geosynthetics in Flexible Pavements – II
Geosynthetics in Flexible Pavements and Carbon Foot Print Analysis
Filtration of Soils Using Geosynthetics
Drainage Applications of Geosynthetics
Erosion Control of Soils Using Geosynthetics
Sustainable Infrastructure Development & Natural Geosynthetics
Introduction to Geosynthetics in Landfills
Case Study of the Construction of Airport Runway at Pakyong, Sikkim Using Geosynthetics (Guest Lecture)
Landfill Engineering Systems (Guest Lecture)
105106053
Civil Engineering
Modern Construction Materials
Dr. Ravindra Gettu
Video
IIT Madras
Select
Prologue
The Science, Engineering and Technology of Materials An Introduction - I
The Science, Engineering and Technology of Materials An Introduction - II
Review of Atomic Bonding - I
Review of Atomic Bonding - II
Structure of Solids - I
Structure of Solids - II
Structure of Solids - III
Movement of Atoms in Solids
Development of Microstructure - I
Development of Microstructure - II
Surface Properties
Response to Stress - Part 1
Response to Stress - Part 2
Response to Stress - Part 3
Failure Theories
Fracture Mechanics - Part 1
Fracture Mechanics - Part 2
Rheology of Liquids and Solids
Thermal Properties
Review of Construction Materials
Wood and Wood Products-1
Wood and Wood Products - 2
Wood and Wood Products - Guest Lecture
Polymers
Fibre Reinforced Polymer - 1
Fibre Reinforced Polymer - 2
Metals Part 1
Metals Part 2
Metals Part 3
Bituminous Material Part 1
Bituminous Material Part 2
Concrete Part 1
Concrete Part 2
Concrete Part 3
Concrete Part 4
Concrete Part 5
Glass - Guest Lecture
Social Perception - Guest Lecture
Water Proofing - Guest Lecture
Floor Finishes _ Guest Lecture
Anchors _ Guest Lecture
105106055
Civil Engineering
Rock Engineering
Dr. V.B. Maji
Web
IIT Madras
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Module 1 Lecture 1
Module 2 Lecture 1
Module 2 Lecture 2
Module 2 Lecture 3
Module 2 Lecture 4
Module 3 Lecture 1
Module 3 Lecture 2
Module 3 Lecture 3
Module 3 Lecture 4
Module 3 Lecture 5
Module 4 Lecture 1
Module 4 Lecture 2
Module 4 Lecture 3
Module 5 Lecture 1
Module 5 Lecture 2
Module 5 Lecture 3
Module 5 Lecture 4
Module 5 Lecture 5
Module 6 Lecture 1
Module 6 Lecture 2
Module 6 Lecture 3
Module 6 Lecture 4
Module 7 Lecture 1
Module 7 Lecture 2
Module 7 Lecture 3
Module 7 Lecture 4
Module 8 Lecture 1
Module 8 Lecture 2
Module 8 Lecture 3
Module 8 Lecture 4
Module 9 Lecture 1
Module 9 Lecture 2
Module 9 Lecture 3
Module 10 Lecture 1
Module 10 Lecture 2
Module 11 Lecture 1
Module 11 Lecture 2
Module 11 Lecture 3
Module 12 Lecture 1
Module 12 Lecture 2
Module 12 Lecture 3
105106056
Civil Engineering
Solid & Hazardous Waste Management
Dr. Indumathi Nambi
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IIT Madras
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Introduction
Municipal Solid Waste Management Fundamentals Presentation
Municipal Solid Waste Management Fundamentals
Hazardous Waste Management Fundamentals Presentation
Hazardous Waste Management Fundamentals
Radioactive Waste Management Fundamentals Presentation
Radioactive Waste Management Fundamentals
Environmental Risk Assessment Presentation
Environmental Risk Assessment
Physico Chemical Treatment Solid Hazardous Waste Presentation
Physico Chemical Treatment Solid Hazardous Waste
Biological Treatment Solid Hazardous Waste Presentation
Biological Treatment Solid Hazardous Waste
Landfill Overview Presentation
Landfill Overview
105106058
Civil Engineering
Urban transportation planning
Dr. V. Thamizh Arasan
Video
IIT Madras
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Lecture - 01 Introduction
Lecture - 02 Introduction Contd.
Lecture - 03 Introduction Contd.
Lecture - 04 Course Outline
Lecture - 05 Conceptual Aspects
Lecture - 06 Conceptual Aspects Contd.
Lecture - 07 Conceptual Aspects Contd.
Lecture - 08 Conceptual Aspects Contd.
Lecture - 09 Trip Generation Analysis
Lecture - 10 Trip Generation Analysis Contd.
Lecture - 11 Trip Generation Analysis Contd.
Lecture - 12 Trip Generation Analysis Contd.
Lecture - 13 Modal Split Analysis
Lecture - 14 Modal Split Analysis Contd.
Lecture - 15 Modal Split Analysis Contd.
Lecture - 16 Modal Split Analysis Contd.
Lecture - 17 Modal Split Analysis Contd.
Lecture - 18 Modal Split Analysis Contd.
Lecture - 19 Modal Split Analysis Contd.
Lecture - 20 Trip Distribution Analysis
Lecture - 21 Trip Distribution Analysis Contd.
Lecture - 22 Trip Distribution Analysis Contd.
Lecture - 23 Trip Distribution Analysis Contd.
Lecture - 24 Trip Distribution Analysis Contd.
Lecture - 25 Trip Distribution Analysis Contd.
Lecture - 26 Trip Distribution Analysis Contd.
Lecture - 27 Route Assignment
Lecture - 28 Route Assignment Contd.
Lecture - 29 Route Assignment Contd.
Lecture - 30 Route Assignment Contd.
Lecture - 31 Transportation Surveys
Lecture - 32 Transportation Surveys Contd.
Lecture - 33 Transportation Surveys Contd.
Lecture - 34 Transport Related Land-Use Models
Lecture - 35 Transport Related Land-Use Models Contd.
Lecture - 36 Transport Related Land-Use Models Contd.
Lecture - 37 Urban Structure
Lecture - 38 Urban Structure Contd.
Lecture - 39 Urban Goods Movement
Lecture - 40 Urban Goods Movement Contd.
105106112
Civil Engineering
Design of Steel Structures I
Prof. A.R. Shantha Kumar
Web
IIT Madras
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Introduction on Metallurgy of Steel
Metallurgy of Steel
Mechanical Properties of Steel
The Manufacturing of Steel Structures
Corrosion
Steel Structures subjected to fire
Fatigue of Steel Structures
Summary on Metallurgy of Steel
Introduction on Limit State Design
Analysis procedures & Design Philosophy
Other Design Requirements
Summary on Metallurgy of Steel
Introduction on Connections
Bolted Connections
Welding & Welded Connections
Bolt Group
Weld Group
Beam and Column Splices
Summary on Connections
Introduction on Tension Members
Behaviour of Tension Members
Design of Tension Members
Summary on Tension Members
Structural Steel Design Project
Introduction on Compression Members
Types of Column Sections
Steps in Design of Axizlly Loaded Columns
Summary on Compression Members
Concluding Remarks
Introduction on Beams
Concept Of Limit State Design of Beams
Behaviour of Steel Beams
Summary on Beams
Introduction on Beam Columns
Concept Of Limit State design of Beam Columns
Design of members subjected to Combined Force
Summary on Beam Columns
Elastic buckling
Strength curves
Strength of compression members
Concepts of effective lengths
Torsional and torsional-flexural buckling of columns
Design strength
105106113
Civil Engineering
Design of Steel Structures II
Prof. A.R. Shantha Kumar
Web
IIT Madras
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Introduction to Beam Column Connection
Connection Configurations
Introduction to Industrial Building
Loads
Industrial Floors
Roof Systems
Plastic Analysis
Portal Frames
Crane Gantry Girders
Design for Wind Action
Design for Earthquake action
Summary
Introduction to Multi Storey Buildings
Loading
Analysis for gravity Loads
Analysis for Lateral Loads
Computer Analysis of Rigid Frames
Advanced Structural forms
Summary
Introduction to Space Frames
Types of Space Frames
Space Truss
Optimisation
Design Space
Optimality criteria
Mathematical Programming
Geometry as Variable
Case Studies
Conclusion
Introduction to Cold Form Steel
Advantages of Cold formed Sections
Local Buckling
Beams
Axially Compressed Column
Combined bending & Compression
Tension Members
Design on the basis of testing
Empirical Methods
Concluding Remarks
Introduction to Microwave Towers
Types of Communication Towers
Ladders and Platforms
Codal Provisions in the design of Communication Towers
Introduction to Transmission Towers
Material Properties, Clearances and Tower Configurations
Factors of Safety and Load
Tower Design
Introduction to Foundation Of Towers
Types of loads on Foundations
Basic Design Requirements
Soil Parameters
Structural Arrangement of Foundation
Soil Resistances for designing foundation
Design Procedure for foundation
Introduction to Bridges
Steel used in bridges
Classification of Steel bridges
Loads and Load Combinations
Analysis of Girder bridges
Plate Girder bridges
Truss Bridges
Summary
105106114
Civil Engineering
Hydraulics
Dr. B.S. Thandaveswara
Web
IIT Madras
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Free Surface Flows - Introduction
Historical Development of Hydraulics
History of Hydraulics in India
Classification of Flow
CHANNELS AND THEIR GEOMETRIC PROPERTIES
Examples
Pipe Flow and Free Surface Flow
Continuity Equation
Energy in Free Surface Flow
Basic Momentum Equation
Velocity Measurement and Distribution
Discharge Measurement by Velocity-area Method
Radio-active tracer technique for Measurement of River Discharges
Measurement of Flow of Water and the Limitations of Velocity-area Method
Errors in Depth Measurement in High Velocity Flows
Secondary Current and Spiral Flow
Energy and Momentum Coefficients-Derivation
Energy and Momentum Coefficients for Different Velocity Distributions
Energy vs. Momentum Equation
Pressure Distribution
Specific Energy Equations for Rectangular Channels
Application of Specific Energy
Problems
Specific Force
Transition-Problems
Application of Specific Force and Specific Energy
Transition in Field
Characteristics of Critical Flow
Occurrence of Critical Flow
Critical Depth in Trapezoidal & Circular Channels
Hydraulic Exponent for Critical Flow
Problem
Critical Flow Depth Computations
Problems
Measuring Flumes
Critical Depth Flumes
Weir's-Introduction
Types of Control Structures
Proportional Weirs
Flow Over Weirs
Polygonal Weirs
Special types of weirs
Broad Crested Weirs
Types of Broad Crested Weirs
Bear Trap Weir
Flow below a Sluice Gate
Brink Depth
Modern Measurements of Flow Measurements
Outlets and Modules
Errors in Measurement
International Standards for Flow Measurement in Open Channel
Concept of Uniform Flow
Derivation of Uniform Flow Equations
Resistance in Open Channel Hydraulics
History of Uniform Flow Velocity and Resistance Factor
Friction
Ganguillet and Kutter Formula
Conveyance
Section Factor for Uniform Flow Computation
Hydraulic Exponent for Uniform Flow Computation
Maximum Discharge
Classification of Bed slope
Computations
Problems-Maximum Discharge
Problem-Irregular Channel
Solution of algebraic or Transcendental Equation by Bisection Method
Solution of Manning Equation by Newton Raphson Method
Slope Area Method
Normal and Critical Slope
Design of Canals
Typical Canal Cross Sections
Canal Lining
Seepage Prevention with Impermeable membranes
Failure of Canal Lining
Most Efficient Hydraulic Section
Design of Unlined Channels
Examples and Problems
Introduction
Dynamic Equation for Steady Gradually Varied Flow
Classification of Gradually Varied Flow Profiles
Real Life Cases of Water Surface Profiles
Sketching of Composite Water Surface Profiles
Examples
Computation of Gradually Varied Flow
Example
Standard Step Method
Example
Integration of Differential Equation
Improved Euler Method
Fourth Order R-K Method
HEC-2
Normal Hydraulic Jump
Classification of Jumps
Momentum Equation
General Hydraulic Jump Equation
Energy Loss in the Jump
Turbulent Characteristics of the Jump
Pressure Distribution in the Jump
Velocity Distribution in Hydraulic Jump
Length of the Jump
Air Entrainment Characteristics of the Jump
Pre Entrained Hydraulic Jump
Air Concentration Distribution along the Jump
Decay of Turbulence Downstream from a Stilling Basin
Hydraulic Jumps in Sloping Channels
Sequent Depth Tail Water Relationship Stilling Basin
Baffle Stilling Basin
Bhavani Type Stilling Basin
Stilling Basin in Sudden Expansion
Slotted Bucket Stilling Basin
Spillways -1
Siphon Spillways/Morning Glory Spillways
Chute Spillway
Stepped Spillway
Introduction
Classification of River Bends
Transverse Water Surface Slope in Bends
Superrelevation
Velocity Distribution in Bends
Introduction
Basic Terminology
Classification of Waves
Ocean Waves
Tides
Nature of Waves
Surge Computation
Example 1
Example 2
Gradually Varied Unsteady Flow
Celerity
Method Of Characteristics
Method of Specified Intervals
Dambreak Problem
History of Dam Failures
Causes of Dam Failures
Routing
Case Study-Dam Break Analysis for Kali River
Self Aerated Flow-Definition of Terms and Instrumentation
Characteristics of Self Aerated Flows
Measurement in Self Aerated Flows
Experimental Investigation
Bhakra Dam SpillwayA Case Study
105106115
Civil Engineering
Infrastructure Planning and Management
Prof. A. Veeraragavan
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IIT Madras
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Introduction to Infrastructure
The Infrastructure Scenario in India
The Power Sector in India
The Water Sector in India
Transportation Infrastructure
Telecommunications sector in India
Urban Infrastructure in India
Rural Infrastructure in India
Road Infrastructure Development in India
Rural Road Development in India- Opportunities and Challenges
Key Issues - Sector-wise
Infrastructure Players
Phases of and Infrastructure Project
Construction and Maintenance of Infrastructure
Public Private Partnerships
PPP Case Study - Cochabamba water privatisation
Dabhol Case Study
Risk Management in infrastructure projects
Infrastructure Economics and Finance
Project Structuring and Risk Allocation in Project Finance
Risk Management for Infrastructure Projects & Term Sheet Development
Project Governance
Data Base Management
Design for Infrastructure Service Life
Developer Selection Methodology
Pavement Management System
Life Cycle Cost and Benefit Analysis
Pavement Preservation and Road Asset Management
Maintenance of Infrastructure - Case Study of Road Sector
Performance Based Contracts - Case Study of Road Sector
Performance Based Design of a highway Pavements for a National Highway project
Privatisation in Infrastructure Projects
Road Information System for maintenance management of road infrastructure
Urban Infrastructure Needs and Funding Options
Innovative Infrastructure Finance
Tourism Infrastructure Projects - Implementation on PPP format
Vizhinjam Port - A Case Study
New and Innovative Materials for Long Lasting Road Infrastructure
Green Highways - Recycling Technology
Durable Road Infrastructure - Choices and Innovations
105106116
Civil Engineering
Mechanics of solids
Prof. M.S. Sivakumar
Video
IIT Madras
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Planar Rigid Body
Degrees of freedom
Equations of Equilibrium
Planar rigid body Statics Example 1
Rigid Body Statics Example 2
Structural Systems with rigid bodies
Types of 1-D Structural Elements
Trusses - Axial members
Analysis of Truss Systems
Stability of Structural systems
Trusses - additional discussions
Trusses - Method of Sections
Beams - example 1
Beams - BMD & SFD
Beams - loading, shear and BM relationships
Virtual work method
Virtual displacements
Finding virtual displacements
Virtual Work Method - Example 1
Virtual Work Method - Example 2
Static Friction - an understanding
Belt Friction
Friction : Solving Problems
General concepts - rigid bodies
Motion of a rigid body = a translation + a rotation
Motion of a point of the rigid body
Motion of one point on a rigid body relative to another
Understanding rotational motion r_dot = w x r
Kinematics velocity and acceleration
Understanding Coriolis Acceleration
Kinematics - Solving problems
Equations of motion of a rigid body
Tips and Techniques 1/2
Tips and Techniques 2/2
Solving Problems 1/4
Solving Problems 2/4
Solving Problems 3/4
Solving Problems 4/4
Engineering Statics - Solving problems
105106117
Civil Engineering
Pre-stressed Concrete Structures
Dr. Amlan Kumar Sengupta
Web
IIT Madras
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Introduction on Pre-stressed Concrete Structures
Advantages and Types of Prestressing
Pre-tensioning Systems and Devices
Post-tensioning Systems and Devices
Concrete (Part I)
Concrete (Part II)
Prestressing Steel
Losses in Prestress (Part I)
Losses in Prestress (Part II)
Losses in Prestress (Part III)
Analysis of Members under Axial Load
Analysis of Member under Flexure (Part I)
Analysis of Member under Flexure (Part II)
Analysis of Member under Flexure (Part III)
Analysis of Member under Flexure (Part IV)
Analysis of Member under Flexure (Part V)
Design of Members
Design of Sections for Flexure (Part I)
Design of Sections for Flexure (Part II)
Design of Sections for Flexure (Part III)
Design of Sections for Flexure (Part IV)
Detailing Requirements for Flexure
Analysis for Shear
Design for Shear (Part I)
Design for Shear (Part II)
Analysis for Torsion
Design for Torsion (Part I)
Design for Torsion (Part II)
Calculation of Deflection
Calculation of Crack Width
Transmission of Prestress (Part I)
Transmission of Prestress (Part II)
Cantilever Beams
Continuous Beams (Part I)
Continuous Beams (Part II)
Composite Sections
One-way Slabs
Two-way Slabs (Part I)
Two-way Slabs (Part II)
Compression Members
Circular Prestressing
105106118
Civil Engineering
Pre-stressed Concrete Structures
Dr. Amlan Kumar Sengupta
Video
IIT Madras
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Prestressing System
Types of Prestressing
Prestressing System and Devices(Pre-Tensioning)
Prestressing System and Devices(Post-Tensioning)
Concrete(Part-1)
Concrete,Grout(Part-2)
Prestressing Steel
Losses in Prestress
Friction&Anchorage Slip
Creep,Shrinkage & Relaxation Losses
Analysis of Members
Analysis of Members Under Flexure
Cracking Moment,Kern Point and Pressure Line
Analysis of Rectangular sections
Analysis of Flanged Sections
Analysis of Partially Prestressed Section
Design of Members
Design of Members for Flexure (Type1 Members)
Design of Members for Flexure (Type1&Type3)
Choice of Sections and Determination of Limiting
Magnel`s Graphical Method
Detailing Requirements
Analysis and Design for Shear and Torsion
Design for Shear (Part 1)
Design for Shear (Part 2)
Analysis of Torsion
Analysis of Torsion(Part -1)
Analysis of Torsion(Part -2)
Calculations of Deflection and Crack Width
Transmission of Prestress
Post-tensioned Members
Cantilever Beams
Continuous Beams(Part 1)
Continuous Beams(Part 2)
Composite Sections
One-Way Slabs
Two-Way Slabs(Part-1)
Two-Way Slabs(Part-2)
compression Members
Circular Prestressing,Conclusion
105106119
Civil Engineering
Water and Waste Water Engineering
Prof. Ligy Philip
Video
IIT Madras
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Introduction To Water & Waste Water Engineering
Water & Waste Water Quality Enhancement
Water & Waste Water Quantity Estimation
Water & Waste Water Quantity Estimation (Contd)
Water & Waste Water Characteristics
Water & Waste Water Characteristics (Contd)
Water Treatment System Unit Operations
Sedimentation
Sedimentation - Continued
Coagulation & Flocculation
Coagulation & Flocculation (Contd)
Softening
Filtration
Filtration (Contd)
Disinfection
Introduction To Domestic Waste Water Treatment
Physical Unit Processes For Waste Water Treatment
Introduction To Microbiology
Microbiology- Continued
Waste Water Treatment Reactor Analysis
Biological Unit Processes - Activated Sludge Process
Activated Sludge Process -Modification
Activated Sludge Process (Contd)
Aeration,Nitrification And Denitrification
Natural Waste Water Treatment Systems: Ponds & Lagoons
Attached Growth Aerobic Process: Trickling Filters And Rotating Biological Contractors
Anaerobic Treatment
Anaerobic Process-UASB Reactor (Contd)
UASB- Continued & Sludge Treatment
Sludge Treatment (Contd)
Sludge Treatment Continued & Waste Water Disposal
Waste Water Disposal And Reuse
Advanced Waste Water Treatment
Adsorption
Ion Exchange, Advanced Oxidation Process
Industrial Waste Water Treatment
Water Distribution Networks
Sanitary sewerage systems
Storm water sewerage systems
Intake Structures And Pumping Installations
105106142
Civil Engineering
Concepts in Geotechnical and Foundation Engineering
Dr. Nainan P. Kurian
Web
IIT Madras
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Void ratio (e) – porosity (n) relationship
The "effective stress principle" – A theoretical building block
Shear strength - The characteristic strength of soil
Earth pressures
Bearing capacity - The load bearing role of soil
Permeability – The flow of water through soil
Consolidation - A cause of settlement of foundations
Compaction - The densification of soil
The essence of geotechnical design of foundations
Geotechnical design of shallow foundations in cohesive and cohesionless soils
Geotechnical design of deep foundations
Special piles
Geotechnical design (Stability analysis) of retaining structures
Soil pressure for structural design
Soil–structure interaction – A brief review of its implications
Some routine field tests in foundation engineering
105106144
Civil Engineering
Advanced Techniques in Geotechnical and Foundation Engineering
Dr. Nainan P. Kurian
Web
IIT Madras
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Shell foundations
Prestressing in foundations
Special construction problems
Pile driving and well sinking
Drainage of soil and dewatering of foundations
Prestressed ground anchors
Diaphragm walls
Bored pile walls
Reinforced earth and soil nailing
Use of geotextiles in geotechnical engineering
Sanitary landfills
Gabions, Cribs
Controlled yielding technique for reduction of lateral earth pressure
Retaining walls with relieving shelves
Ground improvement by vibro-compaction – Stone columns
Soilcrete
Soilfrac (Soil fracturing)
Static installation of piles – Pipe/Box jacking
Vacuum consoilidation
Dynamic compaction
Dynamic pile testing
Centrifugal testing of geotechnical models
Pressuremeter testing
The flat dilatometer test
Piezocone test
Statnamic load testing
Load test using bi-directional Osterberg cell
The role of drilling mud in geotechnical engineering
Cathodic protection of marine foundations
Granular pile anchor in swelling soils
Multistoreyed structures with basements - Top-down construction
Piled raft foundation – Famous examples
Geotechnical intervention in the restoration of the Leaning Tower of Pisa
The Simple Harmonic Motion
105106145
Civil Engineering
NOC:Sustainable River Basin Management
Dr. Franziska Steinbruch
Video
IIT Madras
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Lecture 01
Lecture 02
Lecture 03
Lecture 04
Lecture 05
Lecture 06
Lecture 07
Lecture 08
Lecture 09
Lecture 10
Lecture 11
Lecture 12
Lecture 13
Lecture 14
Lecture 15
Lecture 16
Lecture 17
Lecture 18
Lecture 19
Lecture 20
Lecture 21
Lecture 22
Lecture 23
Lecture 24
Lecture 25
Lecture 26
Lecture 27
Lecture 28
Lecture 29
Lecture 30
Lecture 31
Lecture 32
Lecture 33
Lecture 34
Lecture 35
Lecture 36
Lecture 37
Lecture 38
Lecture 39
Lecture 40
105106149
Civil Engineering
NOC:Project Planning & Control(Course sponsored by Aricent)
Dr. Koshy Varghese
Video
IIT Madras
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Lesson 1. What is Project Management?, Is Project Management an Art/ Science?
Lesson 2. Objectives of a Project, Scientific Way of Managing of Objectives
Lesson 3. Course Scope & Plan, Questions and Discussions
Lesson 4. Construction Industry and National Growth
Lesson 5. Project Stakeholders, Project Phases, Project Organization
Lesson 6. Project Scheduling Levels (& Scheduling Engineer Responsibilities)
Lesson 1. Time Management - Overview
Lesson 2. Basics of Work Breakdown Structure (WBS)
Lesson 3. Tools for Time Management
Lesson 4. Gantt / Bar Chart - History, Representation, Progress Monitoring, Uses, Steps to draw a Bar Chart
Lesson 5. Develop a Bar Chart (Exercise)
Lesson 6. Bar Charts for Resource Usage, Pros and Cons
Lesson 1. Duration Estimation - Types, Inputs, Methods, Parametric Estimation
Lesson 2. Factors influencing Productivity, Example for Ideal Productivity, Factored Productivity and Working Time Factor
Lesson 3. Piling Activity Example, Applicability of different methods to Estimate Activity Duration
Lesson 4. Summary of Key Topics, Types of Networks
Lesson 5. Networks - Introduction, Techniques
Lesson 6. Representing Results in a Bar Chart, AON Example -2
Lesson 1. Introduction to Floats, Types of Floats and Example- 1 Discussion
Lesson 2. Example 4, Usage of Floats for Project Decisions
Lesson 3. Two-Span Bridge: Activity Identification and Duration Estimation (Cont.,)
Lesson 4. Two-Span Bridge: Activity Identification and Duration Estimation
Lesson 5. Two-Span Bridge: Activity- Duration- Predecessors
Lesson 6. Review Network Analysis Concepts, Apply Network Analysis to Two-Span Bridge (Cont.,)
Lesson 7. Two-Span Bridge: Network Analysis
Lesson 8. Two-Span Bridge: Resource Constraints in Network Logic
Lesson 1. Fast-Tracking vs Crashing, Relationship between Activity Direct Cost & Activity Duration - Assumptions
Lesson 2. Time-Cost trade-off: ABCD Example Project, Steps for Crashing
Lesson 3. Time-Cost trade-off: Class Exercise- 2
Lesson 4. Time-Cost trade-off: Problem- 3, Tabulation Approach
Lesson 5. Incorporating Factors such as Bonus and Penalty; Problem- 4
Lesson 1. What is Resource?, Influence of Resources on Schedule, Two-Span Bridge Example, Resource Decisions; ABCD Example Project; Resource Over-Allocation; Example-2
Lesson 2. Projects & Resources, Example of Two Resources, Exercise, Two-Span Bridge Example
Lesson 3. Review Problem -1; Problem -2 (Cash Resource); Resolving Over-Allocation
Lesson 4. Problem 1- Two Resources; Resolving Resource Allocation Problems
Lesson 5. Resource Profile Requirements
Lesson 6. Resource Leveling - Example Network
Lesson 7. Minimum Moment Concept
Lesson 8. Applying Improvement Factor - Illustration
Lesson 1. Introduction to Precedence Diagramming Method (PDM)
Lesson 2. PDM network representation and its issues, Network Calculation
Lesson 3. PDM – Problem #1
Lesson 4. Issues in PDM, Negative Lags, Problem #2 Solution
Lesson 5. PDM – Analysis with non-continuous duration, Floats
Lesson 6. Defining Relationship (Based on Construction Method) - Simple Shed
Lesson 7. Project Monitoring & Control – Typical Project Time Monitoring Process, Levels and Frequency of updates
Lesson 8. Project Control Process, Daily Progress Report, Macro Level Update- Data Need, Standard Progress Reports
Lesson 9. Application: Two Span Bridge – ES Schedule
Lesson 1. Review of Key Issues in Project Monitoring, Earned Value Concept Through Examples
Lesson 2. Basic Earned Value Definitions & Terminology, Summary
Lesson 3. Uncertainty in Project Schedules
Lesson 4. PERT Background & Assumptions, Stepwise Procedure
Lesson 5. PERT Example Problem, Summary
Lesson 6. Course Conclusion
Lesson 7. Emerging Trends/Tools in Project Planning
Lesson 8. Industry Perspective –Prof. N. Raghavan
Lesson 9. Final Exam Pattern, Acknowledgements
105106151
Civil Engineering
NOC:Structural Dynamics
Prof. Ramancharala Pradeep Kumar
Video
IIT Madras
Select
Tutorial 2: Eigen vector and Modal Orthogonality
Module 1: Multi-Degree of Freedom System
Module 3: Development of Tripartite Plot
Module 2: Methods Based on Interpolation of Excitation
Module 1: Numerical Methods
Accessing Elements of a Vector
Calculations with Vectors
Creating Matrices
Matrix Creation Functions
Accessing Elements of a Matrix
Matrix Multiplication
Logical Operators
Writing a FOR Loop
If - Else Statements
While Loop
Line Plots
Annotating Graphs
Exploring Figures in MATLAB Online
Damped Free Vibration
Types of Damping
Logarithmic Decrement
Dynamic Equilibrium Equation Using Energy Method
Module 1: UnDamped Forced Vibration
Module 2: Damped Forced Vibration
Module 3: Relationship between Rd, Rv & Ra
Module 4: Resonant Frequency & Half Power Band Width
Module 4: Approximate Methods For Finding Natural Frequency
Module 3: Multi-Degree of Freedom System: Modal Orthogonality
W11T: Non Structural Elements
Module 2: Non Structural Elements Example
Module 1: Classical and Non-classical Damping
Module 2: Vibration Control
Module 3: Base Isolation
Module 4: Tuned Mass Damper
Creating Vectors
MATLAB as a Calculator
MATLAB Functions
Module 2: Multi-Degree of Freedom System: Solution of Equilibrium Equation
Module 1: Three Dimensional Dynamic Analysis
Module 2: Response Spectrum Analysis
Getting Started with MATLAB Online
What is MATLAB?
W09T01: Centre of Mass & Centre of Stiffness
Module 1: Vibration of Continuous Systems
Module 2: Example Problem on Continuous system
Module 1: Dynamics of Non Structural Elements
Module 1: Introduction of Structural Dynamics
Module 2: Types of Analysis
Module 3: Degrees of Freedom
Module 4: Vibrations of SDOF Systems
Module 5: Methods Solution of Equilibrium Equation
Creating Uniformly Spaced Vectors (LINSPACE)
Module 6: UnDamped free Vibration
Module 1: Response Spectrum
Module 3: Central Difference Method
Module 4: Numerical Methods based on Variation of Acceleration: Newmark’s Method
Central Difference Method (Tutorial)
Module 2: Special Cases of Response Spectrum
Module 1: Response to Arbitrary Force
Module 2: Special Cases in Arbitrary Force
Module 3: Theory of Seismometer
Module 2: Generation of Elastic Design Response Spectra
Module 1: Time History Analysis
Tutorial 01: Generation of Mass Matrix
Module 3: Fourier Transformation
Module 5: Transmissibility
Creating Uniformly Spaced Vectors (Colon Operator)
MATLAB Variables
105107059
Civil Engineering
Advanced Hydraulics
Dr. C. S. P. Ojha
Web
IIT Roorkee
Select
Classification, types and regimes in Open channel flow
Channel geometry
Velocity distribution in open channel, Wide-open channel
Specific energy and Critical flow
Computation of critical flow
Momentum in open channel flow, Specific force
Qualification of Uniform flow, Velocity measurement, Chezy\\\'s and Manning\\\'s Equation
Determination of Roughness Coefficient, Normal Depth and Velocity
Economical Section, Non Erodible Channels
Flow in channel with equivalent roughness, Horton\\\'s method of Equivalent roughness estimation. Flow in close conduits with open channel flow
Dynamic equations of gradually varied flow and assumptions
Draw down and Back water curves, Profile Determination, Graphical integration
Classification of surface profile
Graphical integration, Direct and Standard step method, Numerical methods
Flow through channel transitions
Dynamic equation of spatially varied flow, Spatially varied flow profile, Computation of spatially varied flow
Hydraulic jump
Types and analysis of hydraulic jump
Basic characteristic of jump
Length, Profile jump, Jump on sloping floor
Location of jump
Jump as energy dissipation, Control of jump
Surges in open channel
Sudden transition, Sub-critical flow through sudden transition
Flow through culverts
Flow through bridge piers and obstruction
High flow through bridge pier and obstruction
Channel junction
Application of momentum principle
Impact of jets on plane plates
Impact of jets on curved plates
Turbines, classification, Radial flow turbines, Axial flow turbines
Draft tube and cavitations
Performance of turbines, Similarity laws
Centrifugal pump
Minimum speed to start the pump, Multistage pumps
Positive displacement pumps, Reciprocating pump
Negative slip, Flow separation conditions, Air vessels
Indicator diagram and its variation
Savings in work done
Jet, Submersible and Rotary pumps
105107062
Civil Engineering
Global Positioning System
Dr. R.D. Garg
Web
IIT Roorkee
Select
Definition and Fundamentals of Geodesy, Geoid, Reference Ellipsoid
Geodetic System
History of GPS
Details of GPS Segments
Blocks of GPS satellites
Advantages and Current Limitations of GPS
GPS Signal structure
GPS Receivers
Principles of GPS position fixing
Determination of GPS satellite coordinates
Types of Ephemeris
GPS Data Formats
GPS satellite orbit, clock and position geometry based source of errors
Various Forces on GPS Satellite
Effects of Orbital Bias
Receiver clock dependent source of errors
Cycle slips, Anti Spoofing
Propagation or atmosphere dependent source of errors
Multipath
Satellite geometry based measures
Introduction to adjustment computations
Observation equation
Data Processing Models for single point positioning and relative/differential positioning
Data combinations
Static relative positioning
Single point positioning vs. Relative positioning
Practical GPS survey field procedures
Accuracy and recording time
Accuracy and recording time-1
Preparation of GPS surveys: Setting up an observation plan
Practical aspects of field observations
Observation strategies
Introduction, Legacy civil Signal
Future developments in GPS
Introduction to GLONASS and GALILEO system
Introduction to GLONASS and GALILEO system-1
Geodetic control surveys
Engineering and monitoring
Geographical Information Systems (GIS)
Vehicle tracking and Navigation 8.8 Location Based Service – LBS & special applications
105107066
Civil Engineering
Soil Dynamics
Dr. S. Mittal
Web
IIT Roorkee
Select
General
Equivalent dynamic load to an actual earthquake load
Cause of earthquakes
General-1
Definitions & Harmonic motion
Wave propagation
Case study
General – Utilities
Lab Techniques
Factors Affecting : Shear modulus, Elastic modulus and elastic constants
General-2
Pseudo-Static method
Pseudo-Static analysis
Displacement Analysis
Bearing Capacity of Footings
Settlement, Tilt, Displacement
Pseudo-Static analysis-1
Dynamic Analysis
Dynamic Analysis-2
Introduction
Pseudo-Static analysis-2
Pile foundations
Pile foundations-1
Piles under vertical vibrations
Introduction-1
Seismic stability analysis types
Inertial slop stability analysis
Weakening slope stability analysis
Introduction Liquefaction
Mechanics of liquefaction
Laboratory studies
Different laboratories test
Introduction Machine Foundations
Types of Machine Foundations
Safety criterion
Method of Analysis
Design of machine foundation
Introduction Vibration Isolation
Preventing Vibrations
Basic concept of vibration isolation
Types (Passive and Active)
105107067
Civil Engineering
Urban transportation planning
Dr. M. Parida
Web
IIT Roorkee
Select
General
Transportation in the Cities
Future developments
Urban Activity Systems
Classification of roads
Types of Urban or Road System
Classification of Urban Goods movements-1
Methodology of approach to analysis of goods movement-1
Modelling demand for Urban Goods transport-1
Transport Planning Process-1
Evaluation & Choice-1
Sequence of Activities Involved in transport analysis-1
Introduction--1
Details of Trip Generation-1
Trip Production Statistical Analysis-1
Trip Production Statistical Analysis-2
Category Analysis OR Cross Classification-1
Influencing Factor
Earlier Model Split Models-1
Disaggregate Mode- Choice Model
Binary Choice logit model Situations
Logit Model
Case Studies
Basis of Trip- distribution
Gravity Model of trip distribution
Case Studies of Gravity Models
Growth Factor Methods of Trip distribution-1
Description of transport Network-1
Route Choice Behavior
The Minimum Path
Route Assignment Techniques-1
Example
Introduction---1
Types of movement
Types of Survey-1
Cordon line Survey
Introduction-----1
Types of models
Components of Transportation
Types of Urban or Road System-1
105107120
Civil Engineering
Foundation Engineering
Prof. Mahendra Singh
Video
IIT Roorkee
Select
Shallow Foundation 1
Shallow Foundation 2
Shallow Foundation 3
Shallow Foundation 4
Shallow Foundation 5
Shallow Foundation 6
Shallow Foundation 7
Lateral Earth pressure Theories Retaining Walls - 1
Lateral Earth pressure Theories Retaining Walls - 2
Lateral Earth pressure Theories Retaining Walls - 3
Lateral Earth Pressure Theories Retaining Walls - 4
Lateral Earth Pressure Theories Retaining Walls-5
Pile Foundation-1
Pile Foundation-2
Pile Foundations-3
Pile Foundations-4
Pile Foundations-5
Pile Foundations-6
Pile Foundations-7
Machine Foundations-1
Machine Foundations-2
Machine Foundations-3
Machine Foundations-4
Well Foundations - 1
Well Foundations-2
Well Foundations-3
Foundation Engineering
Foundation Engineering 2
Foundation Engineering 3
Foundation Engineering 4
Foundation Engineering 5
Foundation Engineering 6
Foundation Engineering 7
Foundation Engineering 8
Foundation Engineering 9
Foundation Engineering 10
Foundation Engineering 11
Foundation Engineering 12
Foundation Engineering 13
Foundation Engineering 14
105107121
Civil Engineering
Modern Surveying Techniques
Prof. S.K. Ghosh
Video
IIT Roorkee
Select
Geographic Information System An Introduction
Introduction to Global Positioning System
GPS Positioning Methods
GPS Solutions and Errors
GPS Application
Remote Sensing Introduction
Electromagnetic Spectrum
Sensors and Platform
Sensors and Platform
Image Interpretation
Statistical Evaluation of RS Data
Rectification and Restoration
Image Enhancement
Image Transformation
Orthogonal Transformation
Image Classification(Supervised Classification)
Image Classification(Unsupervised Classification)
Spatial Filtering-Noise Removal
Spatial Filtering-Edge Removal
Photogramatic-Basic concepts of a single photography
Stereoscopy-Basic concepts
Stereoscopy-Geometry of overlaping photograph
Terrestrial Photogrammetry
Digital Elevation Model-Basic Concepts
Digital Elevation Model-Data Input and Stamping
Digital Elevation Model-Surface representation and analysis
GIS-Introductory Concepts
GIS-Data Input
Data Verification and Editing
GIS Data Model
GIS Data Base
Spatial Analysis
Map Overlay and Spatial Correlation
Application to Drought Management
GIS base planning model for educational facilities in rural areas
Application extraction of building attributes
Zonal based tourism planning
Zonal Planning using remote sensing
Municipal GIS for assassment of property tax
Application of remote sensing
105107122
Civil Engineering
Surveying
Prof. J.K. Ghosh
Web
IIT Roorkee
Select
Introduction to Surveying
Fundamentals of Mapping
Overview of Surveying and Indian Topographic Map
Significant Figures
Errors in Measurement
Propogation of Error
Reliability and Quality of Measurement
Direct Measurement of Distance
Errors in Measurement of Distance
Electronic Measurement of Distance
Instrument - Levels
Permanent Adjustment of Level
Levelling Principle, Methods and Differential Levelling
Profile Leveling
Reciprocal and Trigonometric Leveling
Errors, Mistakes and Precautions in Leveling
Representation of Vertical Distance
Representation of vertical distance ? contd.
Fundamentals of Relative direction
Theodolite and its temporary adjustment
Permanent adjustment of Theodolite
Teodolite Measurement and Errors
Basics of Tacheometry and Stadia System
Non-stadia Systems
Introduction to Astronomy
Azimuth - its determination
Field Method of Hour Angle (Based on Sun observation)
Traverse Surveying
Traverse Computation
Coordinate Computation
Omitted Measurement
Plotting of Traverse
Basics of Plane Table Surveying
Methods of Plane table Surveying
Three Point Problem
Errors in Plane Table Surveying
Simple Circular Curve
Layout of a Simple Circular Curve
Transition and Combined Curve
Vertical Curve
105107123
Civil Engineering
Transportation Engineering II
Prof. Rajat Rastogi
Video
IIT Roorkee
Select
Introduction to Railway Engineering
Gauges and Permanent Way
Wheel and Axles, Coning of Wheels
Track Resistances, Hauling Capacity
Track Modulus, Stresses in Track
Stresses in Components of Track
Rails
Creep in Rails
Wears & Failures in Rails
Jointed or Welded rails
Sleepers
Ballast
Fastenings
Geometric Design - Alignment of Track
Horizontal Curve and Super elevation
Speeds on Track
Transition Curve & Widening of Track
Vertical Curve & Gradients
Turnouts - Components
Crossing and Design of Turnout
Track Junctions and Designs
Signals Part-1
Signals Part-2
Train Control Systems
Interlocking of Track
High Speed Tracks
Introduction of Air Transport
Aircraft Characteristics
Aircraft Controls, Airport Site&Size Selection
Airport Obstructions
Runway Orientation
Runway Length
Runway Geometric
Taxiway
Exit Taxiway
Aprons and Aircraft Parking
Terminal Area and Building
Terminal Planning and Hangers
Visual Aids-Markings
Visual Aids-Lighting and Signage
105107129
Civil Engineering
Hydrological Measurements and Analysis of Data
Dr. Sharad Kumar Jain
Web
IIT Roorkee
Select
Hydrologic Cycle - 1
Hydrologic Cycle - 2
Hydrologic Cycle - 3
Classification of Hydrologic Data
Design of Hydrometeorological Networks
Validation of Hydrologic Data
Rainfall Gauges
Spatial Interpolation of Rainfall Data
Disaggregation of Rainfall Data
Analysis of Rainfall Data
Selection of Gauging Sites
Measurement of Discharge
Processing of Streamflow Data
Processing of Streamflow Data-1
Processing of Streamflow Data-2
Pan Evaporation Data
Sunshine Data
Physical Indicators
Biological Indicators
Sediment Data
Processing of Water Quality Data
Ground Water Data
Topographic, Land Use, Land Cover Data
Water Use and Demand Data
Acquisition and Management of Spatial Data-1
Acquisition and Management of Spatial Data-2
Acquisition and Management of Spatial Data-3
Acquisition and Management of Spatial Data-4
Hydrological databases and Dissemination of Data-1
Hydrological databases and Dissemination of Data-2
Basic Concepts
Probability Distributions
Methods of Parameter Estimation
Problems in Parameter Estimation
Hypothesis Testing
Correlation Analysis
Regression Analysis and Linear Regression
Linear Regression
Multiple Linear Regression
Multiple Linear Regression and other topics
105107155
Civil Engineering
NOC:Introduction to Geographic Information Systems
Dr.Arun K.Saraf
Video
IIT Roorkee
Select
Lecture 03-Different types of vector data and concept of topology
Lecture 02-Different components of GIS
Lecture 01-What is Geographic Information Systems?
Lecture 08- Spatial database systems and their types
Lecture 09-Pre-processing of spatial datasets
Lecture 10- Geo-referencing
Lecture 11-Different map projections
Lecture 12- Spatial interpolation techniques
Lecture 13-Digital Elevation Models and different types of resolutions
Lecture 14-Quality assessment of freely available DEMS
Lecture 15-GIS analysis-1
Lecture 16- GIS analysis - Part 2 (Overlaying Operations)
Lecture 17-GIS analysis Part-3 (Buffer Analysis)
Lecture 18 -Classification Methods
Lecture 19 -Errors in GIS and Key elements of maps
Lecture 20- Limitations of GIS
lecture 05-TIN data model and comparisons with raster
Lecture 04-Raster data models and comparisons with vector
Lecture 06- Non-spatial data (attributes) and their type
Lecture 07- Raster data compression techniques
105107156
Civil Engineering
NOC:Principles and Applications of Building Science
Dr. E. Rajasekar
Video
IIT Roorkee
Select
THERMAL PERFORMANCE OF BUILDING ENVELOP - Indices and measures (2/2)
THERMAL PERFORMANCE OF BUILDING ENVELOP - Indices and measures (1/2)
ENERGY EFFICIENCY AND SIMULATION
BUILDING ACOUSTICS - BASICS
SOUND PROPAGATION
ACOUSTIC QUALITY INDICATORS (1/2)
ACOUSTIC QUALITY INDICATORS (2/2)
Thermal Adaptation
Thermal Comfort in Built Environment -2
Thermal Comfort in Built Environment -1
Climate Classification
ACOUSTIC DESIGN CONSIDERATIONS
SHADING ANALYSIS
GLAZING AND SHADING SYSTEMS
THERMAL PERFORMANCE OF BUILDING ENVELOP
BIOCLIMATIC ASSESSMENT
Solar Geometry
ACOUSTIC MATERIALS
LIGHTING - BASICS
LIGHTING – DESIGN CONCEPTS
105107157
Civil Engineering
NOC:GPS SURVEYING
Dr.Jayanta Kumar Ghosh
Video
IIT Roorkee
Select
Field demonstration of GPS Positioning Method
GPS Observables (Types, Errors & Quality)
Errors in GPS Observables (Systematics Errors)
GPS Data Pre-Processing-I
GPS Position
GPS Data Pre-Processing-II
GPS Data Processing-I
GPS Data Processing-II
Quality Assessment of GPS Surveying
Procedure of GPS Surveying-I
Procedure of GPS Surveying-II
GPS Positioning (Principle & Methods)
GPS Software
GPS Signal (Civilian Perspective)
GPS Receiver
GPS System
Introduction (GPS Surveying & Applications)
Procedure of GPS Surveying-III
GPS Field Surveying
GPS Data Processing
105107158
Civil Engineering
NOC:Digital Land Surveying And Mapping(DLS&M)
Prof. Jayanta Kumar Ghosh
Video
IIT Roorkee
Select
Quality Assessment of GPS Surveying
Introduction to Total Station
Parts of Total Station
Accessories of Total Station
Handling & Setting of Total Station
Measurement of Distance
Measurement of Distance Using TS
Measurement of Horizontal Angle Using TS
Measurement of Vertical Angle and Height Using TS
Errors in Total Station
Other Errors in Total Station
Errors and Quality of Surveying Measurements
Error Propagation and Survey Specifications
Basics of Vertical Representation
Contouring
Mapping Fundamentals
GPS Data Processing: Baseline Processing
GPS Data Processing: Network Adjustment
GPS Data Pre-processing: Differencing
GPS Data Pre-processing: Point Positioning
Mapping Basics
Errors in GPS Observables
Principle of GPS Positioning & GPS Observables
GPS Position
Demonstration of GPS Receivers, Software and Positioning of Control Point
GPS Positioning of Control Point
GPS User Segment
GPS Signal (Civilian Perspective)
Introduction of GPS
Fundamentals & Operations
Mapping Software
Overview of Digital Land Surveying
Introduction & Applications
Automated Mapping
Working Steps
Establishment of Control Point
Detailing of Digital Land Surveying
Demonstration of Digital Land Survey Detailing
Data Preparation and Map Making
Overview of the Course
105107160
Civil Engineering
NOC:Digital Image Processing of Remote Sensing Data
Dr.Arun K.Saraf
Video
IIT Roorkee
Select
Limitations and Future of Digital Image Processing
Application of Image Analysis
Image Merging and Image Mosaicing Techniques
SAR Interferometry (InSAR) Techniques
Principles of Image Interpretation
Image Classification Techniques
Basic Image Compression Techniques and Different Image File Formats
Frequency Domain Fourier Transformation
Spatial Filtering Techniques
Multispectral Transform, Scatter Plot, Principal Component Analysis and Decorrelation Stretch
Image Enhancement Techniques part 2
Image Enhancement Techniques part 1
Geo-referencing Techniques
Image histograms and statistics
Color Representation and Transformations
Electromagnetic spectrum, solar reflection, and thermal emission
Image characteristics and Different Resolutions in Remote Sensing
Why is Digital Image processing Important?
Different Techniques of Image Acquisition
Remote-sensing Image and How it is represented.
105108069
Civil Engineering
Advanced Foundation Engineering
Dr. T.G. Sitharam
Web
IISc Bangalore
Select
Soil Exploration
Shallow Foundations
Combined Footing And Raft Foundation
Earth Pressure
Braced Cuts
Sheet Pile Wall
Pile Foundation
Drilled Piers And Caissons
Machine Foundations
Geotextiles Reinforced Earth And Ground Anchors
105108070
Civil Engineering
Applied Elasticity for Engineers
Dr. T.G. Sitharam
Web
IISc Bangalore
Select
Introduction
Introduction Analysis of Stress
Analysis of Stress 1
Analysis of Stress 2
Introduction Analysis of Strain
Analysis of Strain
Introduction Stress-Strain Relations
Stress-Strain Relations
Introduction Two Dimensional Problems in Cartesian Coordinate System
Two Dimensional Problems in Cartesian Coordinate System 1
Two Dimensional Problems in Cartesian Coordinate System 2
Introduction toTwo Dimensional Problems in Polar Coordinate System
Two Dimensional Problems in Polar Coordinate System 1
Two Dimensional Problems in Polar Coordinate System 2
Introduction to Torsion of Prismatic Bars
Torsion of Prismatic Bars
Introduction to Elastic Solutions and Applications in Geomechanics
105108072
Civil Engineering
Continuum Damage Mechanics
Dr. P.C. Pandey
Web
IISc Bangalore
Select
General Introduction – Continuum Damage Mechanics (CDM)
REVIEW OF SOLID MECHANICS CONCEPTS
Indicial Notations, Tensors and Constitutive Equations
Review of Plasticity Concepts Lectures
Thermodynamics and Micromechanics of Damage
Kinetic Laws of Damage Evolution
Nonlinear Finite Element Method Re-Visited
Analysis of Structures Considering Damage
DISCLAIMER-ACKNOWLEDGEMENT-READ-ME
105108073
Civil Engineering
Geo-informatics in Transportation Engineering
Dr. Ashish Verma
Web
IISc Bangalore
Select
Concept of Geo-informatics
Land Use and Transportation Data for GIS
Data Base Development
Map Generation and Analysis
Transportation Network Development and Algorithm
Transportation Models and their Applications Using GIS
GIS-T Applications
Intelligent Transport Systems
Case Studies
105108074
Civil Engineering
Geotechnical Earthquake Engineering
Dr. Gali Madhavi Latha
Web
IISc Bangalore
Select
Introduction to Seismology
Plate Tectonics – Part I
Plate Tectonics – Part II
Seismic waves – Part I
Seismic waves – Part II
Locating Epicenter
Seismicity of India
Forecasting Earthquakes
Earthquake Hazards
Tsunamis
Earthquake Intensity and Magnitude
Ground Motion
Ground Motion Parameters – part I
Ground Motion Parameters – part II
Deterministic Seismic Hazard Analysis
Probabilistic Seismic Hazard Analysis – part-I
Probabilistic Seismic Hazard Analysis – part-II
Exercise Problems in PSHA
Wave Propagation Theories
Seismic Wave Propagation
Dynamic Soil Properties – Part I
Dynamic Soil Properties – Part II
Dynamic Soil Properties – Part III
Dynamic Soil Properties – Part IV
Ground Response Analysis – Part I
Ground Response Analysis – Part II
27. Local Soil Effects
Introduction to Liquefaction
Concepts of Liquefaction
Initiation of Liquefaction
Evaluation of Liquefaction
Liquefaction Hazards
Exercise Problems in Liquefaction
Seismic slope stability analysis part-I
Seismic slope stability analysis part-II
Seismic response of retaining walls part-I
37. Seismic response of retaining walls part-II
Seismic design of shallow foundations
39. Seismic response of pile foundations
40. Mitigation of earthquake hazards and ground improvement
105108075
Civil Engineering
Ground Improvement Techniques
Dr. G.L. Sivakumar Babu
Video
IISc Bangalore
Select
Need for Ground Improvement
Classification of ground modification techniques
Emerging trends in ground improvement
Mechanical modification
Compaction Control
Deep compaction
Dynamic compaction
Vibro-compaction methods
Case studies in stone columns
Prefabricated Vertical Drains (PVDS) – I
Prefabricated drains (PVDS) – II
Dewatering - I
Dewatering - II
Electro-kinetic stabilization
Heating and freezing methods, Blasting methods-I
Heating and freezing methods, Blasting methods-II
Ground Treatment with lime – I
Ground Treatment with lime – II
Ground treatment with cement
Grouting procedures
Grouting
Micropiles
Introduction to Geosynthetics -I
Introduction to Geosynthetics -II
Reinforced soil principles and mechanisms
Material properties
Factors affecting reinforced soil
Bearing capacity improvement – I
Bearing capacity improvement – II
Reinforced soil slopes
Reinforced Soil Walls
Reinforced Soil Walls I
Soil Nailing
Design of embankments on soft soil using geosynthetics
Design of embankments on soft soil using geocells, Use of geosyntheticsfor filtration and drainage
Applications in filtration and drainage & erosion control
Geosynthetics in pavements
Sustainable development and energy geotechnology
Microbial geotechnology and Ground Improvement
Nano-technologies in ground improvement and site remediation
105108076
Civil Engineering
Introduction to Engineering Seismology
Dr. P. Anbazhagan
Web
IISc Bangalore
Select
Earthquake hazards
Engineering seismology
Terminologies and definitions in engineering seismology
Plate Tectonics: Sources and Faults
Earthquake Measurements
Earthquake Waves
Earthquake instrumentations and recording
Seismic Records and interpretations
Earthquakes- Great events and Prediction
Seismic Zonation
Seismic microzonation
Seismic Hazard Assessments
Seismic site Characterization
Site Response Analysis
Liquefaction Assessment
Landslide and Tsunami
Risk and Vulnerability
Integration of Hazard parameters
105108077
Civil Engineering
Remote Sensing
Dr. D. Nagesh Kumar
Web
IISc Bangalore
Select
Introduction, Basic concepts of remote sensing, Airborne and space-borne sensors, Passive and active remote sensing
EMR Spectrum, Energy sources and radiation principles
Energy interactions in the atmosphere
Energy interactions with earth surface features, Spectral reflectance curves I
Satellites and orbits, Geo-synchronous, sun synchronous and polar orbiting satellites
Energy interactions with earth surface features, Spectral reflectance curves II
Spatial, spectral and radiometric resolutions, Temporal resolution I
Spatial, spectral and radiometric resolutions, Temporal resolution II
Multispectral, thermal and hyperspectral remote sensing.
Remote sensing satellites and their features
Geometric Corrections
Ground Control Points (GCP), Co-registration of data
Atmospheric corrections, Solar illumination corrections
Concept of colour, RGB and IHS colour schemes, Colour composites
Contrast stretching – linear and non-linear stretching
Filtering techniques, Edge enhancement
Density slicing, Thresholding, Intensity-Hue-Saturation (IHS) images, Time composite images, Synergetic images
Supervised and unsupervised classification I
Supervised and unsupervised classification II
Fuzzy classification
Image transformations, Ratio images, Vegetation indices
Principal component analysis
Image processing software
Image processing using MATLAB
Introduction, Sources of digital elevation data, Types of DEM
Radar interferometry, Shuttle Radar Topographic Mission (SRTM) data I
Radar interferometry, Shuttle Radar Topographic Mission (SRTM) data II
DEM for Slope, Aspect, Flow direction, Flow pathways, Flow accumulation, Streams, Catchment area delineation I
DEM for Slope, Aspect, Flow direction, Flow pathways, Flow accumulation, Streams, Catchment area delineation II
Watershed management
Rainfall-runoff modeling
Irrigation management
Flood mapping
Drought assessment
Environmental monitoring
Other applications
Passive and active microwave remote sensing, Sources of microwave data I
Passive and active microwave remote sensing, Sources of microwave data II
Global positioning System (GPS)
Hyperspectral remote sensing
105108078
Civil Engineering
Site Characterisation & Instrumentation
Dr. P. Anbazhagan
Web
IISc Bangalore
Select
Introduction to site characterization
Concept of Site characterization
Methodology
Site Investigation using Non-Destructive Tests
Site investigation using in situ testing
Sampling
Laboratory tests for site characterization
Numerical Methods
Geo-Technical and Geo-Environmental Case Studies
Seismic site characterization
Instrumentation
105108079
Civil Engineering
Stochastic Hydrology
Prof. P.P. Mujumdar
Video
IISc Bangalore
Select
Introduction
Bivariate Distributions
Independence ; Functions of Random Variables
Moments of a Distribution
Normal Distribution
Other Continuous Distributions
Parameter Estimation
Covariance and Correlation
Data Generation
Time Series Analysis(1)
Time Series Analysis(2)
Time Series Analysis(3)
Frequency Domain Analysis(1)
Frequency Domain Analysis(2) and ARIMA Models(1)
ARIMA Models(2)
ARIMA Models(3)
ARIMA Models(4)
Case Studies(1)
Case Studies(2)
Case Studies(3)
Case Studies(4)
Markov Chains(1)
Markov Chains(2)
Frequency Analysis(1)
Frequency Analysis(2)
Frequency Analysis(3) and Probability Plotting(1)
Probability Plotting(2)
Goodness of Fit
IDF Relationships
Multiple Linear Regression
Principal Component Analysis
Regression on Principal Components
Multivariate Stochastic Models(1)
Multivariate Stochastic Models(2)
Multivariate Stochastic Models(3)
Data Consistency Checks(1)
Data Consistency Checks(2)
Data Consistency Checks(3)
Recent Applications: Climate Change Impact Assessment
Summary of the Course
105108080
Civil Engineering
Stochastic Structural Dynamics
Prof. C.S. Manohar
Video
IISc Bangalore
Select
Definition of probability measure and conditional probability
Scalar random variables-1
Scalar random variables-2
Multi-dimensional random variables-1
Multi-dimensional random variables-2
Random processes-1
Random processes-2
Random processes-3
Random processes-4, Random vibrations of sdof systems-1
Random processes-4 Random vibrations of sdof systems-1
Random vibrations of sdof systems -2
Random vibrations of sdof systems-3
Random vibrations of sdof systems-4
Random vibrations of mdof systems-1
Random vibrations of mdof systems-2
Random vibrations of mdof systems-3
Random vibrations of mdof systems-4
Failure of randomly vibrating systems-1
Failure of randomly vibrating systems-2
Failure of randomly vibrating systems-3
Failure of randomly vibrating systems-4
Markov vector approach-1
Markov vector approach-2
Markov vector approach-3
Markov vector approach-4
Markov vector approach-5, Monte Carlo simulation approach-1
Markov vector approach-5 & Monte Carlo simulation approach-1
Monte Carlo simulation approach-2
Monte Carlo simulation approach-3
Monte Carlo simulation approach-4
Monte Carlo simulation approach-5
Monte Carlo simulation approach-6
Monte Carlo simulation approach-7
Probabilistic methods in earthquake engineering-1
Probabilistic methods in earthquake engineering-2
Probabilistic methods in earthquake engineering-3
Probabilistic methods in earthquake engineering-4
Fatigue failure & Vibration energy flow models
Problem solving session-1
Problem solving session-2
Problem solving session-3
Problem solving session-4
105108081
Civil Engineering
Water Resources Systems Planning and Management
Dr. D. Nagesh Kumar
Web
IISc Bangalore
Select
System Components,Planning & Management
Modeling of Water Resources System
Optimization & Simulation
Objective Function, Maxima, Minima & Saddle Points, Convexity & Concavity
Constrained & Unconstrained Optimization
Lagrange Multipliers & Kuhn – Tucker Condition
Preliminaries
Graphical Method
Simplex Method - I
Simplex Method - II
Linear Programming Application
Reservoir operation and reservoir sizing using LP
Introduction and preliminaries
Water Allocation - I
Water Allocation - II
Capacity Expansion
Reservoir operation
Introduction
Multipurpose Reservoir Operation
Weighting function and constraint method
Review of probability theory
Uncertainty and reliability analysis
Chance constrained LP - I
Chance constrained LP - II
Stochastic Processes and Transition Probabilities
Stochastic DP
Introduction and river basin simulation
Reservoir operation simulation
Performance Measures
River basin planning and management
Water distribution system
Ground water system
Water quality modeling
Floodplain management
Urban storm water management
Fuzzy optimization
Genetic algorithms
Multi – Criteria decision making
Decision Support Systems
Expert systems
105108124
Civil Engineering
Composite Materials
Dr. P.C. Pandey
Web
IISc Bangalore
Select
General Introduction
Basic Constituent materials in Composites
Behaviour of Laminae
Behaviour of a Laminae-II
Laminated Composites-I
Laminated Composites-II
Strength and Failure Theories
Design Concepts
Manufacturing Composite Laminates
Special Topics
Engineering Applications of Composite Materials
Civil Engineering Applications
105108125
Civil Engineering
Computational Hydraulics
Prof. M.S. Mohan Kumar
Web
IISc Bangalore
Select
Computational Hydraulics
105108127
Civil Engineering
Optimization Methods
Dr. D. Nagesh Kumar
Web
IISc Bangalore
Select
Historical Development and Model Building
Optimization Problem and Model Formulation
Classification of Optimization Problems
Classical and Advanced Techniques for Optimization
Stationary points: Functions of Single and Two Variables
Convexity and Concavity of Functions of One and Two Variables
Optimization of Functions of Multiple Variables: Unconstrained Optimization
Optimization of Functions of Multiple Variables subject to Equality Constraints
Kuhn-Tucker Conditions
Preliminaries
Graphical Method
Simplex Method - I
Simplex Method ? II
Revised Simplex Method, Duality and Sensitivity analysis
Other Algorithms for Solving Linear Programming Problems
Use of software for solving linear programming problems
Transportation Problem
Assignment Problem
Structural & Water Resources Problems
Introduction
Recursive Equations
Computational Procedure in Dynamic Programming
Other Topics
Design of Continuous Beam
Optimum Geometric Layout of Truss
Water Allocation as a Sequential Process ? Recursive Equations
Water Allocation as a Sequential Process ? Numerical Example
Capacity Expansion
Integer Linear Programming
Mixed Integer Programming
Integer Programming - Examples
Piecewise Linear Approximation of a Nonlinear Function
Multi-objective Optimization
Multilevel Optimization
Direct and Indirect Search Methods
Evolutionary Algorithms for Optimization and Search
Applications in Civil Engineering
105108128
Civil Engineering
Reliability Engineering
Dr. G.L. Sivakumar Babu
Web
IISc Bangalore
Select
Introduction to Enginering design
Probability theory and Conditional probability ,Graphical representation
Spatial Variability Using Random Fields
Sampling
Levels of Reliability Methods
Simulation Methods
Logical Trees
System Reliability
105108130
Civil Engineering
Water Resources Systems : Modeling Techniques and Analysis
Prof. P.P. Mujumdar
Video
IISc Bangalore
Select
Introduction
Definitions and types of systems
Optimization: Functions of a single variable
Optimization: Functions of multiple variables
Constrained optimization (1)
Constrained optimization (2)
Kuhn-Tucker conditions and Introduction to Linear Programming
Linear Programming: Graphical method
Linear Programming: Simplex method (1)
Linear Programming: Simplex method (2)
Linear Programming: Multiple solutions
Linear Programming: Unbounded and infeasible problems
Linear Programming: Dual problem
Introduction to Dynamic Programming
Dynamic Programming: Water allocation problem
Dynamic Programming: Reservoir operation problem
Dynamic Programming: Capacity expansion and shortest route problems
Simulation: Introduction to Multi-objective planning
Multi-objective planning
Reservoir sizing
Reservoir capacity using Linear Programming (1)
Reservoir capacity using Linear Programming (2)
Reservoir operation
Multi-reservoir systems
Stationary policy using Dynamic Programming
Hydropower generation
Basic probability theory (1)
Basic probability theory (2)
Chance constrained Linear Programming for reservoir operation and design (1)
Chance constrained Linear Programming for reservoir operation and design (2)
Stochastic Dynamic Programming for reservoir operation (1)
Stochastic Dynamic Programming for reservoir operation (2)
Stochastic Dynamic Programming for reservoir operation (3)
Fuzzy optimization (1)
Fuzzy optimization (2)
Fuzzy optimization for water quality control and reservoir operation
Conjunctive use of ground and surface water
Hydropower optimization
Crop yield optimization
Multi-basin and multi-reservoir systems
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Civil Engineering
Finite Element method for vibration and Stability analyses
Prof. C.S. Manohar
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IISc Bangalore
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Equations of motion using Hamilton’s principle
Equations of motion for continuous systems and Rayleigh’s quotient
Rayleigh Ritz method and method of weighted residuals
FEM: motivations. Analysis of axially vibrating rods and Euler-Bernoulli beams
Beam elements. Reference systm. Assembly of matrices. Imposition of BCS. Final equation of motion.
FE modelling of planar structures
FE modelling of planar structures (continued)
FRF-s and damping models-1
FRF-s and damping models-2
Material damping models. Dynamic stiffness and transfer matrices
Twisting of circular bars and rectangular bars. Analysis of grids
3D frames
Mathematical preliminaries and terminologies; Euler’s forward and backward difference methods.
Forward and backward Euler method. Central difference method
Second order implicit methods
Energy conservation. Nonlinear systems.
Model reduction schemes
Substructuring schemes
Plane stress models
Plane stress models (continued)
3d Solid element
Axisymmetric models. Plate bending elements.
Plate bending elements (continued)
Plate bending elements (continued).
Plate bending elements [continued]
Introduction
Introduction (continued)
Nonlinear dynamical systems, fixed points and bifurcations
Energy methods in stability analysis
FEM for stability analysis. Euler-Bernoulli beam and general formulations
3D beam element; plate element; imperfection sensitive structures; beams on elastic foundations; rings and arches.
Dynamic analysis of stability and analysis of time varying systems
Dynamic analysis of stability and analysis of time varying systems.
FE modelling of vehicle structure interactions
Inverse response sensitivity analysis
Inverse response sensitivity analysis (continued)
Introduction and review of continuum mechanics
Review of measures of strain and stress; balance laws.
Total and updated Lagrangian formulations
Closure