Irrigation And Drainage Engineering

Irrigation and Drainage Engineering Bachelor of Engineering(BE) videos According to syllabus of Institute of Engineering(IoE), Tribhuvan University (TU)

Intermediate 5 (1 Reviews ) 18 Students enrolled
Last updated Sun, 12-Jun-2022 Nepali
What will I learn?
  • After the completion of this course students will get the complete knowledge of Irrigation and Drainage Engineering.

Curriculum for this course
145 Lessons 21h 0m
0. Course Content and Marks Distribution
1 Lessons 8m
  • 1. Course Content and Marks Distribution 8 Minutes Free
  • 1. Introduction 7 Minutes Free
  • 2. History of Irrigation Development 5 Minutes Free
  • 3. Status Of Irrigation in Nepal 3 Minutes Free
  • 4. Command Area and Inten sity Of Iriigation 5 Minutes Free
  • 5. Method od Irrigation 4 Minutes Free
  • 6. Method Of Surface Irrigation 9 Minutes
  • 7. Method Of Surface Irrigation 5 Minutes
  • 8. Sprinkler Irrigation 7 Minutes
  • 9. Method of Sub surface irrigation 4 Minutes
  • 10. Drip Irrigation 5 Minutes
  • 11. Planning Of Irrigation Project 5 Minutes
  • 1. Introduction 7 Minutes
  • 2. Delta and Duty 5 Minutes
  • 3. Factor Affecting Duty And Methods Of Improving Duty 8 Minutes
  • 4. Relation Brtween Delta And Duty 5 Minutes
  • 5. Crop Water Requirement 5 Minutes
  • 6. Irrigation Water Requirement 7 Minutes
  • 7. Water Loses in Canal 5 Minutes
  • 8. Soil Moisture Relationship 7 Minutes
  • 9. Irrigation efficiencies 4 Minutes
  • 10. Numerical 1 (Penman's equation) 5 Minutes
  • 11. Numerical 2 (Field Capacity) 10 Minutes
  • 12. Numerical 3 (Duty and Delta) 5 Minutes
  • 1. Types of Canal 6 Minutes
  • 2. Canal Structure 11 Minutes
  • 3. Balancing Depth 6 Minutes
  • 1. Sediment Transport 7 Minutes
  • 2. Shield Theory 8 Minutes
  • 3. Sheild Entrainment Function 9 Minutes
  • 4. Numerical 1 (Tractive Force Approach) 7 Minutes
  • 5. Numerical 2 (Tractive Force Approach) 11 Minutes
  • 6. Silt Theeories 7 Minutes
  • 7. Numerical 3 (Kennedy Theory) 14 Minutes
  • 8. Numerical 4 (Kennedy Theory) 13 Minutes
  • 9. Lacey Theory 5 Minutes
  • 10. Lacey Design Steps 6 Minutes
  • 11. Numerical 5 (Lacey's Theory) 7 Minutes
  • 12. Lined Canal 11 Minutes
  • 13. Lined Canal Cross Section 15 Minutes
  • 14. Numerical 6 (Lined Canal) 8 Minutes
  • 1. Introduction 10 Minutes
  • 2. Components ( Weir) 7 Minutes
  • 3. Other Components 8 Minutes
  • 4. Seepage Theory 11 Minutes
  • 5. Blighs Theory 14 Minutes
  • 6. Numerical 1 (Blighs Theory) 13 Minutes
  • 7. Lanes Theory 4 Minutes
  • 8. Numerical 2 (Lanes Theory 12 Minutes
  • 9. Khosla Theory 11 Minutes
  • 10. Method of independent Variable 10 Minutes
  • 11. Correction 9 Minutes
  • 12. Numerical 3 (Khosla Theory), part 1 17 Minutes
  • 13. Numerical 3 (Khosla Theory), part 2 21 Minutes
  • 14. Numerical 3 (Khosla Theory), part 3 6 Minutes
  • 15. Numerical 3 (Khosla Theory), part 4 22 Minutes
  • 16. Diversion Headworks 8 Minutes Free
  • 17. Design of Weir Under Sluice 16 Minutes
  • 18. Design Steps of Weir and Undersluice 8 Minutes
  • 19. Numerical 4 (Weir) 10 Minutes
  • 20. Numerical 5 (Undersluice Design), part 1 15 Minutes
  • 21. Numerical 5 (Undersluice Design), part 2 13 Minutes
  • 22. Numerical 5 (Undersluice Design), part 3 13 Minutes
  • 23. Numerical 5 (Undersluice Design), part 4 14 Minutes
  • 24. Numerical 6(Undersluice Design), part 5 25 Minutes
  • 25. Numerical 5 (Undersluice Design), part 6 12 Minutes
  • 26. Design of Silt Excluder 7 Minutes
  • 27. Numerical 6 (Silt Excluder) 12 Minutes
  • 1. Introduction 6 Minutes
  • 2. Stages of River 5 Minutes
  • 3. Types of River Training 3 Minutes
  • 4. Methods Of River Training 7 Minutes
  • 5. Design Of Guide Banks 14 Minutes
  • 6. Numerical on Guide Banks, part 1 6 Minutes
  • 7. Numerical on Guide Banks, part 2 21 Minutes
  • 8. Gronyes and Classification 12 Minutes
  • 9. Design Consideration of Groynes 8 Minutes
  • 10. Artificial cutoff, Pitched island , Bandalling 10 Minutes
  • 1. Introduction 8 Minutes
  • 2. Canal Escapes 8 Minutes
  • 3. Fall And its Types (part 1) 8 Minutes
  • 4. Fall and Its Types, (part 2) 7 Minutes
  • 5. Design of Sarda Fall 14 Minutes
  • 6. Numerical 1 (Sarda Fall), part 1 7 Minutes
  • 7. Numerical 1 (Sarda Fall), part 2 7 Minutes
  • 8. Numerical 1 (Sarda Fall), part 3 12 Minutes
  • 9. Numerical 1 (Sarda Fall), part 4 9 Minutes
  • 10. Outlets 6 Minutes
  • 11. Good Outlet 6 Minutes
  • 12. Numerical 2 (Outlets) 7 Minutes
  • 13. Design of Head Regulator and Cross Regulator 16 Minutes
  • 14 . Numerical 3 (Cross and Head Regulator, part 1 9 Minutes
  • 15. Numerical 3 (Cross and Head Regulator), part 2 13 Minutes
  • 16. Numerical 3 (Cross and Head Regulator), part 3 12 Minutes
  • 1. Cross Drainage Introduction 5 Minutes
  • 2. Type Of Cross Drainage 10 Minutes
  • 3. Types of Aqueduct 6 Minutes
  • 4. Design Of Syphon Aqueduct 9 Minutes
  • 5. Numerical on Syphon Aqueduct, part 1 15 Minutes
  • 6. Numerical on Syphon Aqueduct, part 2 11 Minutes
  • 7. Numerical on Syphon Aqueduct, part 3 8 Minutes
  • 8. Numerical on Syphon Aqueduct, part 4 10 Minutes
  • 9. Numerical on Syphon Aqueduct, part 5 11 Minutes
  • 10. Numerical on Syphon Aqueduct, part 6 6 Minutes
  • 11. Numerical on Syphon Aqueduct, part 7 8 Minutes
  • 12. Numerical On Syphon Aqueduct, part 8 6 Minutes
  • 1. Introduction 9 Minutes
  • 2. Effects and Prevention Measure 13 Minutes
  • 3. Drainage System 7 Minutes
  • 4. Design Of Shallow Surface Drainage 13 Minutes
  • 5. Numerical 1 (Surface Drainage), part 1 10 Minutes
  • 6. Numerical 1 (Surface Drainage), part 2 10 Minutes
  • 7. Sub Surface Drainage And Their Design 8 Minutes
  • 8. Layout Of Sub Surface Drainage 8 Minutes
  • 9. Derivation On Spacing Of Drain 16 Minutes
  • 10. Numerical 2 (Sub Surface Drainage) 9 Minutes
  • 2075 Baishakh
    • 1. Q.no. 1a 3 Minutes
    • 2. Q.no. 1b 3 Minutes
    • 3.Q.no. 1c 4 Minutes
    • 4. Q.no. 2a 5 Minutes
    • 5. Q.no. 2b 3 Minutes
    • 6. Q.no. 2c 3 Minutes
    • 7. Q.no. 3a 3 Minutes
    • 8.Q.no. 3b 9 Minutes
    • 9. Q.no. 3c 2 Minutes
    • 10. Q.no. 4a 6 Minutes
    • 11. Q.no. 4b 4 Minutes
    • 12. Q.no. 5a 3 Minutes
    • 13. Q.no. 5b 4 Minutes
    • 14. Q.no. 5c 2 Minutes
    • 15. Q.no. 5d 5 Minutes
    2077 Chaitra
    • 1. Q.no. 1 4 Minutes
    • 2. Q.no. 2 4 Minutes
    • 3. Q.no. 3 5 Minutes
    • 4. Q.no. 4 4 Minutes
    • 5. Q.no. 5a 3 Minutes
    • 6. Q.no. 5b 6 Minutes
    • 7. Q.no. 6 17 Minutes
    • 8. Q.no. 7 3 Minutes
    • 9. Q.no. 8 8 Minutes
    • 10. Q.no. 9 3 Minutes
    • 11. Q.no. 10 10 Minutes
    • 12. Q.no. 11 13 Minutes
    • 13. Q.no. 12 4 Minutes
    • 14. Q.no. 13 2 Minutes
    Requirements
    • Students are required to have basic knowledge of Irrigation and Drainage Engineering.
    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 Irrigation and Drainage Engineering with most frequently asked questions in final exam of BE along with 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 highly appreciated!

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    Includes:
    • 21+ Hours On demand videos
    • 145 Lessons
    • 30 Days Subscription
    • Access On Mobile And Web

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