Engineering Hydrology

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

Intermediate 5 (1 Reviews ) 55 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 Hydrology.

Curriculum for this course
164 Lessons 30h 17m
1. Marks Distribution
1 Lessons 2m
  • Course Introduction 2 Minutes Free
  • 1. DEFINITION AND USES 8 Minutes Free
  • 2. Hydrologic Cycle 15 Minutes Free
  • 3. Water Balance Equation and Global water balance 12 Minutes Free
  • 4. Numerical 1 6 Minutes Free
  • 5. Numerical 2 12 Minutes
  • 6. Development of Hydro Metereological study in Nepal 4 Minutes
  • 1. Defintion, causes, forms and types of precipitation 20 Minutes
  • 2. Measurement of precipitation 12 Minutes
  • 3. Raingauge network 7 Minutes
  • 4. Estimation of missing rainfall data 5 Minutes
  • 5. Numerical 1 (estimation of rainfall data) 4 Minutes
  • 6. Numerical 2 (estimation of rainfall data) 4 Minutes
  • 7. Snowfall measurement 9 Minutes
  • 8.Test for inconsistencies of rainfall data 10 Minutes
  • 9. Numerical ( Test for inconsistencies of rainfall data) 16 Minutes
  • 10. Presentation of rainfall data 18 Minutes
  • 11. estimation of mean rainfall 11 Minutes
  • 12. numerical( iso hyetal method) 5 Minutes
  • 13. Numerical ( Thiessen polygon) 12 Minutes
  • 14. IDF curve 4 Minutes
  • 15. Numerical ( IDF curve) 18 Minutes
  • 16. DAD curve 6 Minutes
  • 17. Numerical ( DAD curve) 9 Minutes
  • 1. Initial losses 11 Minutes
  • 2. Evaporation process 16 Minutes
  • 3. Estimation of Evaporation 16 Minutes
  • 4. Evaporimeter 9 Minutes
  • 5. Evaporimeter( numerical) 4 Minutes
  • 6. Empirical Methods for estimation of Evaporation 4 Minutes
  • 7. Evapotranspiration 8 Minutes
  • 8. Potential Evapotranspiration measurement by Penmann's Equation 5 Minutes
  • 9. Numerical on PET 12 Minutes
  • 10. Measurement of Actual Evapotranspiration 5 Minutes
  • 11. Horton's equation 4 Minutes
  • 12. Infiltrometers 10 Minutes
  • 13. Infiltration indices 7 Minutes
  • 14. Numerical ( Infiltration indices) 7 Minutes
  • 15. Numerical ( Horton equation ) 4 Minutes
  • 16. Numerical ( Infiltration ) 13 Minutes
  • 17. Numerical ( Infiltration) 13 Minutes
  • 1. Drainage basin and its quantitative characteristics 22 Minutes
  • 2. Factors affecting runoff from a catchment 8 Minutes
  • 3. Rainfall runoff relationship 4 Minutes
  • 4. Stream gauging 13 Minutes
  • 5. Stream flow measurement by area velocity method 6 Minutes
  • 6. Velocity measurement using current meter and float 13 Minutes
  • 7. Moving boat method 5 Minutes
  • 8. Dilution technique for stream flow measurement 16 Minutes
  • 9. Ultrasonic method and Electromagnetic method 7 Minutes
  • 10. Stream flow computation by Slope Area Method 15 Minutes
  • 11. Numerical ( Slope area method) 17 Minutes
  • 12. Numerical ( Slope Area Method) 23 Minutes
  • 13. Development of Rating Curve 15 Minutes
  • 14. Determination of stage corresponding to zero discharge 12 Minutes
  • 15. Numerical ( Rating curve) 9 Minutes
  • 16. Numerical ( Rating curve) 25 Minutes
  • 17. Estimation of monthly flows from rainfall 18 Minutes
  • 18. Numerical ( Velocity Area Method) 11 Minutes
  • 19. Numerical1 ( Velocity Area Method) 11 Minutes
  • 1.Component of hydrograph 17 Minutes
  • 2. Separation of baseflow 11 Minutes
  • 3. Numerical (DRH) 7 Minutes
  • 4. Numerical (Hyetograph) 10 Minutes
  • 5. Unit hydrograph, their uses and limitations 13 Minutes
  • 6. Numerical (Unit Hydrograph) 11 Minutes
  • 7. Numerical 8 Minutes
  • 8. Derivation of unit hydrograph due to isolated storm 11 Minutes
  • 9. Derivation of unit hydrograph due to complex storm 4 Minutes
  • 10. Numerical ( Complex storm) 15 Minutes
  • 11. Numericals related to conversion of UH into flood hydrograph 9 Minutes
  • 12. Derivation of unit hydrograph of different duration using superpositon method 12 Minutes
  • 13. Derivation of unit hydrograph of different duration using S-curve method 7 Minutes
  • 14. S curve numerical 6 Minutes
  • 15. Numerical on S curve 17 Minutes
  • 16. Numerical( unit hydrograph) 9 Minutes
  • 17. Numerical 17 Minutes
  • 18. Numerical 28 Minutes
  • 1. Design flood 8 Minutes
  • 2. Statistical methods of flood prediction_1 11 Minutes
  • 3. Return period, frequency and risk 8 Minutes
  • 4. Numerical ( probability of exceedence ) 4 Minutes
  • 5. Frequency Analysis 8 Minutes
  • 6. Numerical 4 Minutes
  • 7. Gumbel's method 18 Minutes
  • 8. Gumbel probability paper 15 Minutes
  • 9. Numerical 11 Minutes
  • 10. Numerical 22 Minutes
  • 11. Numerical 11 Minutes
  • 12. Numerical 9 Minutes
  • 13. Numerical 18 Minutes
  • 14. Log Pearson method and Log Normal method 9 Minutes
  • 15. Numerical 25 Minutes
  • 16. Rational method for flood prediction 18 Minutes
  • 17. Numerical (Rational method) 7 Minutes
  • 18. Numerical ( rational method) 10 Minutes
  • 19. Empirical method for flood prediction 15 Minutes
  • 20. Numerical ( Empirical method) 4 Minutes
  • 1. Flood routing 12 Minutes
  • 2. Types of flood routing 12 Minutes
  • 3. Hydrologic Channel routing 14 Minutes
  • 4. Numerical ( Muskingum method) 10 Minutes
  • 5. Clark's method 12 Minutes
  • 6. Numerical ( Clark's method) 9 Minutes
  • 2075 Ashwin
    • 1. Q. No. 1.a 6 Minutes
    • 2. Q. No. 1.b 3 Minutes
    • 3. Q. No. 1.c 14 Minutes
    • 4. Q. No. 2.a 7 Minutes
    • 5. Q. No. 2.b 12 Minutes
    • 6. Q.No. 3.a 13 Minutes
    • 7. Q. No. 3.b 25 Minutes
    • 8. Q.No. 4.a 4 Minutes
    • 9. Q. No. 4.b 0 Minutes
    • 10. Q. No. 4.c 9 Minutes
    • 11. Q. No. 5.a. and 5.b 6 Minutes
    • 12. Q. No. 5.c 10 Minutes
    2075 Chaitra
    • 1. Q. No. 1 5 Minutes
    • 2. Q. No.2 10 Minutes
    • 3. Q. No. 3.a 12 Minutes
    • 4. Q. No. 3.b 15 Minutes
    • 5. Q. No. 3.c 3 Minutes
    • 6. Q. No. 4.a 20 Minutes
    • 7. Q. No. 4.b 10 Minutes
    • 8 . Q. No. 5.a 9 Minutes
    • 9. Q. No. 5.b 14 Minutes
    • 11. Q. No. 6.a 9 Minutes
    • 12. Q. No. 6.b 11 Minutes
    • 13. Q. No. 7.a. and 7.b 13 Minutes
    2076 Ashwin
    • 1. Q. No1. a and b 7 Minutes
    • 2. Q. No. 2 8 Minutes
    • 3. Q. No 3.a 11 Minutes
    • 4. Q. No. 3.b 12 Minutes
    • 5. Q. No. 4. a and c 10 Minutes
    • 6. Q. No. 4.b 11 Minutes
    • 7. Q. No. 5. a 3 Minutes
    • 8. Q. No. 5.b 10 Minutes
    • 9. Q. No. 6.a 10 Minutes
    • 10. Q. No. 6.b 0 Minutes
    • 11. Q. No. 7 10 Minutes
    2076 Chaitra
    • 1. Q.No. 1 12 Minutes
    • 2. Q.No. 2 7 Minutes
    • 3. Q. No. 3 7 Minutes
    • 4. Q. No. 4 6 Minutes
    • 5. Q. No. 5 14 Minutes
    • 6. Q.No. 6 8 Minutes
    • 7. Q. No. 7 14 Minutes
    • 8. Q. No. 8 22 Minutes
    • 9. Q. No.9 30 Minutes
    • 10. Q. No.10 13 Minutes
    2078 Bhadra
    • 1. Q. No. 1 4 Minutes
    • 2. Q. No. 2.a 5 Minutes
    • 3. Q. No. 2.b 4 Minutes
    • 4. Q. No. 3.a 8 Minutes
    • 5. Q. No. 3.b 7 Minutes
    • 6. Q. No. 4.a 15 Minutes
    • 7. Q. No. 4.b 6 Minutes
    • 8. Q. No. 5.a 3 Minutes
    • 9. Q. No. 5.b 10 Minutes
    • 10. Q. No. 6.a 13 Minutes
    • 11. Q. No. 6.b 4 Minutes
    • 12. Q. No. 7.a 6 Minutes
    • 13. Q. No. 7.b 13 Minutes
    Requirements
    • "Students are required to have basic knowledge of Hydrology, based on syllabus of IoE "
    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 courses of Hydrology. This course tries to cover all the questions with solution of most frequently asked questions in final exam of BE with theories and numerical. 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:
    • 30+ Hours On demand videos
    • 164 Lessons
    • 30 Days Subscription
    • Access On Mobile And Web

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