Hydropower Engineering @ 45 Days

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

Intermediate 0 (0 Review ) 244 Students enrolled
Last updated Fri, 01-Aug-2025 Nepali
What will I learn?
  • After the completion of this course, students will get the complete knowledge of Hydropower Engineering.

Curriculum for this course
233 Lessons 30h 52m
Chapter 1. Introduction
8 Lessons
  • 1. Hydropower Introduction.mp4 00:06:16
  • 2. History of Hydropower Development in Nepal.mp4 00:05:32
  • 3. Hydropower Potential of Nepal.mp4 00:05:05
  • 4. Status of Hydropower Development in Nepal.mp4 00:04:47
  • 5. Hydropower Development Policy Of Nepal.mp4 00:10:17
  • 6. Energy and its Sources.mp4 00:05:57
  • 7. Advantages and Disadvantages of Hydropower.mp4 00:05:46
  • 8. Hydropower Development Institution.mp4 00:06:30
  • 1. Introduction to Planning of Hydropower Project.mp4 00:06:36
  • 2. Hydropower Development Cycle.mp4 00:09:05
  • 3. Types of Hydropower.mp4 00:09:49
  • 4. Types of Hydropower.mp4 00:10:57
  • 5. Stages of Hydropower Development.mp4 00:06:59
  • 6. Stages of Hydropower Development.mp4 00:11:13
  • 7. Feasibility and Pre-feasibility.mp4 00:05:53
  • 8. Components of RoR, PRoR and Storage Type Project.mp4 00:15:10
  • 1. Introduction.mp4 00:08:19
  • 2. Method of Hydrological Data Processing.mp4 00:05:35
  • 3. Flow Duration Curve.mp4 00:10:52
  • 4. Numerical 1 (Flow Duration Curve).mp4 00:10:41
  • 5. Economic Plant Capacity.mp4 00:11:52
  • 6. Numerical 2 (Economic Installed Capacity).mp4 00:14:46
  • 7. Power Duration Curve and Load Curve.mp4 00:05:22
  • 8. Load Factor, Capacity Factor, D.F, U.F.mp4 00:05:53
  • 9. Numerical 3 (Power).mp4 00:08:56
  • 10. Mass Inflow Curve.mp4 00:02:51
  • 11. Reservoir Capacity.mp4 00:04:04
  • 12. Reservoir Capacity by Graphical Method.mp4 00:06:55
  • 13. Numerical 4 (Storage Capacity Of Reservoir, Graphical Method).mp4 00:09:52
  • 14. Sedimentation in Reservoir.mp4 00:04:38
  • 15. Numerical 5 (Power, Energy, amd Storage Calculation, part-1).mp4 00:22:13
  • 16. Numerical 6 (Power, Energy and Storage Calculation, part-2).mp4 00:09:29
  • 1. Introduction to Headworks of Storage Plants.mp4 00:06:19
  • 2. Classification of Dam (Concrete Dam).mp4 00:05:38
  • 3. Embankement Dam and Types.mp4 00:07:24
  • 4. Earthern Dam and Types.mp4 00:05:38
  • 5. Classification on the Basis of Function, Head.mp4 00:07:21
  • 6. Dam site Evaluation.mp4 00:06:14
  • 7. Dam Site Selection.mp4 00:09:06
  • 8. Selection of Type of Dam.mp4 00:06:36
  • 9. Loads and their Combination.mp4 00:07:56
  • 10. Loads and their Combination (Seepage, Uplift,Self weight).mp4 00:08:26
  • 11. Secondary Loads.mp4 00:06:54
  • 12. Exceptional Loads.mp4 00:05:35
  • 13. Load Combination.mp4 00:02:58
  • 14. Normal Stresses.mp4 00:05:27
  • 15. Derivation of Principle and Shear Stresses (Principle Stresses).mp4 00:14:37
  • 16. Derivation of Principle and Shear Stresses (Shear Stresses).mp4 00:09:29
  • 17. Elementary Profile of Gravity Dam.mp4 00:09:29
  • 18. Stresses Developed in Elementary Profile.mp4 00:12:55
  • 19. Practical Profile of Gravity Dam.mp4 00:04:10
  • 20. Modes of Failure of Gravity Dam.mp4 00:08:56
  • 21. Middle Third Rule.mp4 00:07:41
  • 22. Stability Analysis of Gravity Dam.mp4 00:05:50
  • 23. Numerical 1 (Gravity Dam,part 1).mp4 00:16:12
  • 24. Numerical 1(Gravity Dam,part 2) (1).mp4 00:06:50
  • 24. Numerical 1(Gravity Dam,part 2).mp4 00:08:08
  • 26. Numerical 2 (Gravity Dam with Drainage Gallery,part 2).mp4 00:17:51
  • 27. Numerical 2 (Gravity Dam with Drainage Gallery,part 3).mp4 00:08:36
  • 28. Foundation Treatment of Gravity Dam.mp4 00:06:15
  • 29. Design Criteria for Earthern Dam.mp4 00:06:15
  • 32. Seepage Analysis in Earthern Dam.mp4 00:04:05
  • 33. Seepage Analysis in Earthern Dam (Phreatic line by Graphical Method).mp4 00:10:55
  • 34. Analytical Method__Course Description_.mp4 00:05:04
  • 35. Discharge through Body of Dam (Dam with Drainage Filter).mp4 00:04:20
  • 36. Phreatic line for Homogenous Dam Without Filter.mp4 00:11:01
  • 37. Numerical 3 (Homogenous Dam with Filter).mp4 00:11:00
  • 38. Seepage Discharge Through Isotropic soil.mp4 00:06:27
  • 39. Numerical 4 (Earthern Dam Drop Potential).mp4 00:04:07
  • 40. Seepage through Earth Dam Resting on Impervious Base.mp4 00:06:19
  • 41. Hydraulic Method (Impervious Foundation).mp4 00:07:10
  • 42. Numerical 5 (Dishcharge using Hydraulic Method).mp4 00:12:13
  • 43. Seepage Through Earthern Dam with Central Core.mp4 00:04:18
  • 44. Numerical 6 (Impervious Central Core).mp4 00:12:18
  • 45. Intake Introduction.mp4 00:07:09
  • 46. Types of Intake.mp4 00:10:10
  • 47. Intake Design.mp4 00:06:42
  • 48. Numerical 7 (Intake)-part1.mp4 00:08:34
  • 49. Numerical 7 (Intake)-part 2.mp4 00:08:36
  • 50. Spillways and Types, part1.mp4 00:07:25
  • 51. Spillways and Type, part 2.mp4 00:07:18
  • 52. Energy Dissipator.mp4 00:07:18
  • 53. Selection of Dissipating Structure.mp4 00:05:03
  • 54. Design Concept of Stilling Basin.mp4 00:10:09
  • 55. Numerical 8 (Stilling Basin).mp4 00:13:27
  • 56. Gates their Types and Location.mp4 00:10:49
  • 1. Introduction.mp4 00:09:10
  • 2. General Requirements of Functional ROR Headworks.mp4 00:08:27
  • 3. Sediment Handling.mp4 00:06:42
  • 4. Design of Settling basin.mp4 00:08:13
  • 5. Components of Settling Basin.mp4 00:05:47
  • 6. Parameters of Settling Basin Design.mp4 00:06:21
  • 7. Parameters of Settling Basin Design.mp4 00:08:07
  • 8. Design Method Of Settling Basin (Particle Approach).mp4 00:09:54
  • 9. Design Steps By Particle Approach.mp4 00:07:43
  • 10. Numerical 1. Design Of Settling Basin By Particle Approach.mp4 00:10:33
  • 11. Concentration Approach.mp4 00:06:48
  • 12. Design Steps For Concentration Approach.mp4 00:03:13
  • 13. Numerical 2. Design of Settling Basin by Concentration Approach.mp4 00:06:57
  • 14. Estimation of Sediment Volume.mp4 00:04:07
  • 15. Numerical 3. Design of Settling Basin by Ideal Theory and Time of Flushing Calculation.mp4 00:06:48
  • 16. Numerical 3. part 2.mp4 00:06:29
  • 17. Types of Settling Basin.mp4 00:05:31
  • 1. Introduction.mp4 00:10:19
  • 2. Classification of Tunnels (Pressure and Non Pressure Flow).mp4 00:09:48
  • 3. Geometrical Shape Of Tunnel.mp4 00:09:25
  • 4. Criteria of Tunnel Alignment.mp4 00:03:18
  • 5. Hydraulic Design Of Tunnel.mp4 00:06:11
  • 6 .Method of Tunneling.mp4 00:10:08
  • 7. Supports in Tunnel, part 1.mp4 00:06:52
  • 8. Supports in Tunnel, part 2.mp4 00:09:42
  • 9. Grouting and Tunnel Lining.mp4 00:05:30
  • 10. Forebay.mp4 00:10:09
  • 11. Design Consideration of Forebay.mp4 00:07:24
  • 12. Numerical on Forebay.mp4 00:14:13
  • 13. Surge Tank.mp4 00:09:15
  • 14. Type of Surge Tank.mp4 00:07:17
  • 15. Hydraulic design of surge tank,part 1.mp4 00:09:15
  • 16. Hydraulic design of surge tank, part 2.mp4 00:09:08
  • 17. Numerical 2. Design of Surge Tank, part1.mp4 00:11:23
  • 18. Numerical 2. Design of Surge Tank, part2.mp4 00:11:23
  • 19. Penstock and its Thickness.mp4 00:07:43
  • 20. Economic Diameter of Penstock.mp4 00:05:42
  • 21. Graphical Method.mp4 00:11:14
  • 22. Analytical Approach of Penstock Optimization,part 1.mp4 00:10:48
  • 23. Analytical Approach of Penstock Optimization,part 2.mp4 00:11:07
  • 24. Water Hammer.mp4 00:07:13
  • 25. Rigid Column Theory.mp4 00:07:13
  • 26. Limitations of Rigid Column Theory.mp4 00:05:25
  • 27. Elastic Water Column Theory, part1.mp4 00:06:59
  • 28. Elastic Water Column Theory, part2.mp4 00:09:22
  • 29. Elastic Water Column Theory, part3__Course Description_.mp4 00:08:23
  • 30. Elastic Water Column Theory for Rigid Pipe.mp4 00:04:14
  • 31. Numerical 3. Thickness of Penstock.mp4 00:12:13
  • 1. Hydro Electric Machine and Types of Turbine.mp4 00:07:16
  • 2. Impulse and Reaction Turbine.mp4 00:08:18
  • 3. Pelton Turbine and Its Working Principle.mp4 00:05:40
  • 4. Components of Pelton Turbine.mp4 00:06:10
  • 5. Francis Turbine.mp4 00:06:10
  • 6. Components of Francis Turbine.mp4 00:08:23
  • 7. Kaplan Turbine.mp4 00:06:19
  • 8. Efficiency and Speed of Turbine.mp4 00:08:16
  • 9. Specific Speed and Its Relation.mp4 00:09:34
  • 10. Specific Speed for Different Turbine.mp4 00:02:22
  • 11. Selection Criteria For Turbines.mp4 00:06:38
  • 12. Characterstics of Turbine.mp4 00:07:19
  • 13. Characterstics of Turbine, part 2.mp4 00:07:19
  • 14. Characterstics Curve of Turbine.mp4 00:08:42
  • 15. Characterstics Curve of Turbine (Operating Curve).mp4 00:08:13
  • 16. Characterstics Curve of Turbine (Constant EfficienyCurve).mp4 00:08:13
  • 17. Turbine Setting.mp4 00:06:38
  • 18. Design of Pelton Turbine.mp4 00:05:59
  • 19. Numerical 1. Design of Pelton Turbine.mp4 00:10:50
  • 20. Design of Francis Turbine.mp4 00:02:56
  • 21. Numerical 2. Design of Francis Turbine.mp4 00:13:01
  • 22. Design of Kaplan Turbine.mp4 00:02:31
  • 23. Numerical 3. Design of Kaplan Turbine.mp4 00:09:50
  • 24. Draft Tube.mp4 00:04:48
  • 25. Theory on Draft Tube.mp4 00:07:22
  • 26. Numerical 4. Draft Tube.mp4 00:09:26
  • 27. Cavitation.mp4 00:04:40
  • 28. Electro Mechanical Equipments.mp4 00:09:37
  • 29. Pumps and Its Type.mp4 00:09:37
  • 1. Powerhouse.mp4 00:04:55
  • 2. Powerhouse Structure.mp4 00:06:02
  • 3. Powerhouse Dimension.mp4 00:05:04
  • 4. Layout of Pelton and Francis Turbine.mp4 00:05:33
  • 2075 Chaitra|Q.no 1.a.mp4 00:08:54
  • 2075 Chaitra|Q.no 1.b.mp4 00:05:08
  • 2075 Chaitra|Q.no 1.c.mp4 00:05:24
  • 2075 Chaitra|Q.no 2.a.mp4 00:18:59
  • 2075 Chaitra|Q.no 2.b.mp4 00:03:02
  • 2075 Chaitra|Q.no 2.c.mp4 00:08:47
  • 2075 Chaitra|Q.no 3.a.mp4 00:09:03
  • 2075 Chaitra|Q.no 3.b.mp4 00:03:03
  • 2075 Chaitra|Q.no 3.c.mp4 00:13:01
  • 2075 Chaitra|Q.no 4.a.mp4 00:06:30
  • 2075 Chaitra|Q.no 4.b part 1.mp4 00:12:23
  • 2075 Chaitra|Q.no 4.b part 2.mp4 00:13:16
  • 2075 Chaitra|Q.no 5.a.mp4 00:07:06
  • 2075 Chaitra|Q.no 5.b.mp4 00:03:13
  • 2075 Chaitra|Q.no 5.c.mp4 00:06:29
  • 2076 Ashwin|Q.no. 1.a.mp4 00:15:43
  • 2076 Ashwin|Q.no. 1.b.mp4 00:07:02
  • 2076 Ashwin|Q.no. 2.a.mp4 00:10:27
  • 2076 Ashwin|Q.no. 2.b.mp4 00:03:16
  • 2076 Ashwin|Q.no. 3.a.mp4 00:10:39
  • 2076 Ashwin|Q.no. 3.b.mp4 00:04:16
  • 2076 Ashwin|Q.no. 4.a.mp4 00:10:13
  • 2076 Ashwin|Q.no. 4.b.mp4 00:04:52
  • 2076 Ashwin|Q.no. 4.c.mp4 00:03:52
  • 2076 Ashwin|Q.no. 5.a.mp4 00:04:41
  • 2076 Ashwin|Q.no. 5.b.mp4 00:03:37
  • 2076 Ashwin|Q.no. 5.c.mp4 00:02:02
  • 2076 Chaitra|Q.no. 1.a.mp4 00:16:38
  • 2076 Chaitra|Q.no. 1.b.mp4 00:02:38
  • 2076 Chaitra|Q.no. 2.a part1.mp4 00:02:38
  • 2076 Chaitra|Q.no. 2.a part2.mp4 00:18:38
  • 2076 Chaitra|Q.no. 2.a part3.mp4 00:07:22
  • 2076 Chaitra|Q.no. 2.b.mp4 00:06:13
  • 2076 Chaitra|Q.no. 3.a.mp4 00:02:52
  • 2076 Chaitra|Q.no. 3.b.mp4 00:07:34
  • 2076 Chaitra|Q.no. 4.mp4 00:20:15
  • 2076 Chaitra|Q.no. 5.a.mp4 00:03:24
  • 2076 Chaitra|Q.no. 5.b.mp4 00:03:36
  • 2076 Chaitra|Q.no. 5.c.mp4 00:11:09
  • 2078 Bhadra|Q.no. 1.a.mp4 00:02:20
  • 2078 Bhadra|Q.no. 1.b (Part 1).mp4 00:13:00
  • 2078 Bhadra|Q.no. 1.b (Part 2).mp4 00:15:54
  • 2078 Bhadra|Q.no. 2.a.mp4 00:14:05
  • 2078 Bhadra|Q.no. 2.b.mp4 00:04:42
  • 2078 Bhadra|Q.no. 3.a (Part 1).mp4 00:09:38
  • 2078 Bhadra|Q.no. 3.a (Part 2).mp4 00:05:23
  • 2078 Bhadra|Q.no. 3.b.mp4 00:19:15
  • 2078 Bhadra|Q.no. 3.c.mp4 00:03:25
  • 2078 Bhadra|Q.no. 4.a.mp4 00:04:51
  • 2078 Bhadra|Q.no. 4.b.mp4 00:12:38
  • 2078 Bhadra|Q.no. 5.a.mp4 00:08:20
  • 2078 Bhadra|Q.no. 5.b.mp4 00:02:30
  • 2078 Bhadra|Q.no. 5.c.mp4 00:02:30
  • 2079 Baishakh|Q.no. 1.a.mp4 00:21:28
  • 2079 Baishakh|Q.no. 1.b.mp4 00:03:50
  • 2079 Baishakh|Q.no. 2.a.mp4 00:12:11
  • 2079 Baishakh|Q.no. 2.b.mp4 00:02:52
  • 2079 Baishakh|Q.no. 2.c.mp4 00:06:41
  • 2079 Baishakh|Q.no. 3.a.mp4 00:11:23
  • 2079 Baishakh|Q.no. 3.b.mp4 00:02:34
  • 2079 Baishakh|Q.no. 3.c.mp4 00:04:20
  • 2079 Baishakh|Q.no. 4.a.mp4 00:05:49
  • 2079 Baishakh|Q.no. 4.b.mp4 00:03:51
  • 2079 Baishakh|Q.no. 4.c.mp4 00:04:13
  • 2079 Baishakh|Q.no. 5.a.mp4 00:06:52
  • 2079 Baishakh|Q.no. 5.b.mp4 00:12:36
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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