Hydropower Engineering

Hydropower Engineering, Bachelor of Engineering(BE) videos according to syllabus of Institute of Engineering(IoE), Tribhuvan University (TU).

Intermediate 0 (0 Review ) 8 Students enrolled
Last updated Thu, 30-Jun-2022 Nepali
What will I learn?
  • After the completion of this course, students will get the complete knowledge of Hydropower Engineering.

Curriculum for this course
87 Lessons 11h 0m
1. Chapter 1. Introduction
8 Lessons 50m
  • 1. Introduction 6 Minutes Free
  • 2. History of Hydropower Development in Nepal 5 Minutes Free
  • 3. Hydropower Potential of Nepal 5 Minutes Free
  • 4. Status of Hydropower Development in Nepal 4 Minutes Free
  • 5. Hydropower Development Policy Of Nepal 10 Minutes Free
  • 6. Energy and its Sources 5 Minutes
  • 7. Advantages and Disadvantages of Hydropower 5 Minutes
  • 8. Hydropower Development Institution 6 Minutes
  • 1. Introduction 6 Minutes
  • 2. Hydropower Development Cycle 9 Minutes
  • 3. Types of Hydropower 9 Minutes
  • 4. Types of Hydropower 10 Minutes
  • 5. Stages of Hydropower Development 6 Minutes
  • 6. Stages of Hydropower Development 11 Minutes
  • 7. Feasibility and Pre-feasibility 5 Minutes
  • 1. Introduction 8 Minutes
  • 2. Method of Hydrological Data Processing 5 Minutes
  • 3. Flow Duration Curve 10 Minutes
  • 4. Numerical 1 (Flow Duration Curve) 10 Minutes
  • 5. Economic Plant Capacity 11 Minutes
  • 6. Numerical 2 (Economic Installed Capacity) 14 Minutes
  • 7. Power Duration Curve and Load Curve 5 Minutes
  • 8. Load Factor, Capacity Factor, D.F, U.F 5 Minutes
  • 9. Numerical 3 (Power) 8 Minutes
  • 10. Mass Inflow Curve 2 Minutes
  • 11. Reservoir Capacity 4 Minutes
  • 12. Reservoir Capacity by Graphical Method 6 Minutes
  • 13. Numerical 4 (Storage Capacity Of Reservoir, Graphical Method) 9 Minutes
  • 14. Sedimentation in Reservoir 4 Minutes
  • 15. Numerical 5 (Power, Energy, amd Storage Calculation, part-1) 22 Minutes
  • 16. Numerical 6 (Power, Energy and Storage Calculation, part-2) 9 Minutes
  • 1. Introduction 6 Minutes
  • 2. Classification of Dam (Concrete Dam) 5 Minutes
  • 3. Embankement Dam and Types 7 Minutes
  • 4. Earthern Dam and Types 5 Minutes
  • 5. Classification on the Basis of Function, Head 7 Minutes
  • 6. Dam site Evaluation 6 Minutes
  • 7. Dam Site Selection 9 Minutes
  • 8. Selection of Type of Dam 6 Minutes
  • 9. Loads and their Combination 7 Minutes
  • 10. Loads and their Combination (Seepage, Uplift,Self weight) 8 Minutes
  • 11. Secondary Loads 6 Minutes
  • 12. Exceptional Loads 5 Minutes
  • 13. Load Combination 2 Minutes
  • 14. Normal Stresses 5 Minutes
  • 15. Derivation of Principle and Shear Stresses (Principle Stresses) 14 Minutes
  • 16. Derivation of Principle and Shear Stresses (Shear Stresses) 9 Minutes
  • 17. Elementary Profile of Gravity Dam 9 Minutes
  • 18. Stresses Developed in Elementary Profile 12 Minutes
  • 19. Practical Profile of Gravity Dam 4 Minutes
  • 20. Modes of Failure of Gravity Dam 8 Minutes
  • 21. Middle Third Rule 7 Minutes
  • 22. Stability Analysis of Gravity Dam 5 Minutes
  • 23. Numerical 1 (Gravity Dam,part 1) 16 Minutes
  • 24. Numerical 1(Gravity Dam,part 2) 8 Minutes
  • 25. Numerical 2 (Gravity Dam with Drainage gallery,part 1) 6 Minutes
  • 26. Numerical 2 (Gravity Dam with Drainage Gallery,part 2) 17 Minutes
  • 27. Numerical 2 (Gravity Dam with Drainage Gallery,part 3) 8 Minutes
  • 28. Foundation Treatment of Gravity Dam 6 Minutes
  • 29. Design Criteria for Earthern Dam 6 Minutes
  • 30. Causes of Failure of Earthern Dam 12 Minutes
  • 31. Seepage Control Measure in Earthern Dam 11 Minutes
  • 32. Seepage Analysis in Earthern Dam 4 Minutes
  • 33. Seepage Analysis in Earthern Dam (Phreatic line by Graphical Method) 10 Minutes
  • 34. Analytical Method 5 Minutes
  • 35. Discharge through Body of Dam (Dam with Drainage Filter) 4 Minutes
  • 36. Phreatic line for Homogenous Dam Without Filter 11 Minutes
  • 37. Numerical 3 (Homogenous Dam with Filter) 11 Minutes
  • 38. Seepage Discharge Through Isotropic soil 6 Minutes
  • 39. Numerical 4 (Earthern Dam Drop Potential) 4 Minutes
  • 40. Seepage through Earth Dam Resting on Impervious Base 6 Minutes
  • 41. Hydraulic Method (Impervious Foundation) 7 Minutes
  • 42. Numerical 5 (Dishcharge using Hydraulic Method) 12 Minutes
  • 43. Seepage Through Earthern Dam with Central Core 4 Minutes
  • 44. Numerical 6 (Impervious Central Core) 12 Minutes
  • 45. Intake Introduction 7 Minutes
  • 46. Types of Intake 10 Minutes
  • 47. Intake Design 6 Minutes
  • 48. Numerical 7 (Intake)-part1 8 Minutes
  • 49. Numerical 7 (Intake)-part 2 8 Minutes
  • 50. Spillways and Types, part1 7 Minutes
  • 51. Spillways and Type, part 2 7 Minutes
  • 52. Energy Dissipator 7 Minutes
  • 53. Selection of Dissipating Structure 5 Minutes
  • 54. Design Concept of Stilling Basin 10 Minutes
  • 55. Numerical 8 (Stilling Basin) 13 Minutes
  • 56. Gates their Types and Location 10 Minutes
  • Requirements
    • Students are required to have basic knowledge of Engineering Hydrology and Hydraulics.
    Description

    The videos herein are strictly based on syllabus of Institute of Engineering Tribhuvan University, Nepal promoting "e-Learning in Nepal" and are made with intention to provide guidance to the "Bachelor in Engineering(BE) appearing students", for securing good results. The course tries to cover all the lessons of Hydropower Engineering with the most frequently asked questions in final exam of BE along with the numerical solutions. We strongly believe that, viewers will be benefited from these videos and the thirst of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and the  highly appreciated!

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    • 87 Lessons
    • 30 Days Subscription
    • Access On Mobile And Web

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