Water Resource Systems: Modeling Techniques and Analysis. Instructor: Prof. P. P. Mujumdar, Department of Civil Engineering, IISc Bangalore.

FREE
This course includes
Hours of videos

1083 years, 2 months

Units & Quizzes

39

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Certificate of Completion

The course introduces the concepts of systems techniques in water resources planning and management. Topics covered in this course include Systems Techniques in Water Resources: Optimization with methods using calculus; Linear Programming; Dynamic Programming; Simulation; Combination of Simulation and Optimization; Multi-objective Planning; Reservoir Systems - Deterministic Inflow: Reservoir Sizing; Reservoir Operation - standard operating policy, optimal operating policy; multi-reservoir systems; Reservoir Systems - Random Inflow: Chance Constrained Linear Programming; Concept of Reliability; Stochastic Dynamic Programming; Applications - Reservoir systems operated for Irrigation, Hydropower, Flood Control and Municipal and Industrial Supplies; Water Quality Control in River Systems; Case Studies; Recent Modeling Tools - Artificial Neural networks, Fuzzy Inference Systems; Fuzzy Linear Programming. (from nptel.ac.in)

Course Currilcum

    • Lecture 01 – Introduction Unlimited
    • Lecture 02 – Definitions and Types of Systems Unlimited
    • Lecture 03 – Optimization: Functions of a Single Variable Unlimited
    • Lecture 04 – Optimization: Functions of Multiple Variables Unlimited
    • Lecture 05 – Constrained Optimization Unlimited
    • Lecture 06 – Constrained Optimization (cont.) Unlimited
    • Lecture 07 – Kuhn-Tucker Conditions and Introduction to Linear Programming Unlimited
    • Lecture 08 – Linear Programming: Graphical Method Unlimited
    • Lecture 09 – Linear Programming: Simplex Method Unlimited
    • Lecture 10 – Linear Programming: Simplex Method (cont.) Unlimited
    • Lecture 11 – Linear Programming: Multiple Solutions Unlimited
    • Lecture 12 – Linear Programming: Unbounded and Infeasible Problems Unlimited
    • Lecture 13 – Linear Programming: Dual Problem Unlimited
    • Lecture 14 – Introduction to Dynamic Programming Unlimited
    • Lecture 15 – Dynamic Programming: Water Allocation Problem Unlimited
    • Lecture 16 – Dynamic Programming: Reservoir Operation Problem Unlimited
    • Lecture 17 – Dynamic Programming: Capacity Expansion and Shortest Route Problems Unlimited
    • Lecture 18 – Simulation: Introduction to Multi-objective Planning Unlimited
    • Lecture 19 – Multi-objective Planning Unlimited
    • Lecture 20 – Reservoir Sizing Unlimited
    • Lecture 21 – Reservoir Capacity using Linear Programming Unlimited
    • Lecture 22 – Reservoir Capacity using Linear Programming (cont.) Unlimited
    • Lecture 23 – Reservoir Operation Unlimited
    • Lecture 24 – Multi-Reservoir Systems Unlimited
    • Lecture 25 – Stationary Policy using Dynamic Programming Unlimited
    • Lecture 26 – Hydropower Generation Unlimited
    • Lecture 27 – Basic Probability Theory Unlimited
    • Lecture 28 – Basic Probability Theory (cont.) Unlimited
    • Lecture 29 – Chance Constrained Linear Programming for Reservoir Operation and Design Unlimited
    • Lecture 30 – Chance Constrained Linear Programming for Reservoir Operation and Design (cont.) Unlimited
    • Lecture 31 – Stochastic Dynamic Programming for Reservoir Operation, Part 1 Unlimited
    • Lecture 32 – Stochastic Dynamic Programming for Reservoir Operation, Part 2 Unlimited
    • Lecture 33 – Stochastic Dynamic Programming for Reservoir Operation, Part 3 Unlimited
    • Lecture 35 – Fuzzy Optimization (cont.) Unlimited
    • Lecture 36 – Fuzzy Optimization for Water Quality Control and Reservoir Operation Unlimited
    • Lecture 37 – Conjunctive Use of Ground and Surface Water Unlimited
    • Lecture 38 – Hydropower Optimization Unlimited
    • Lecture 39 – Crop Yield Optimization Unlimited
    • Lecture 40 – Multi-basin and Multi-reservoir Systems Unlimited