Water Supply Engineering @ 45 Days

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

Intermediate 5 (3 Reviews ) 97 Students enrolled
Last updated Tue, 15-Oct-2024 Nepali
What will I learn?
  • After the completion of this course, students will get the complete knowledge of Water Supply Engineering.

Curriculum for this course
209 Lessons 24h 30m
Chapter 1. Introduction
5 Lessons
  • 1. Introduction to Water Supply Engineering.mp4 00:08:35
  • 2. Types of Water and Objective of Water Supply.mp4 00:06:22
  • 3. Historical Development of Water Supply System.mp4 00:05:11
  • 4. Schematic Diagram of Water Supply System.mp4 00:11:17
  • 5. Components of Water Supply System.mp4 00:11:25
  • 1. Introduction to Sources of Water.mp4 00:04:51
  • 2. Surface Sources.mp4 00:08:08
  • 3. Capacity Determination of Impounded Reservoir.mp4 00:04:39
  • 4. Numerical 1(Impounded Reservoir).mp4 00:06:27
  • 5. Ground Water Sources (Aquifer).mp4 00:05:09
  • 6. Ground Water Sources (Well).mp4 00:04:31
  • 7. Infiltration Galleries and Wells.mp4 00:06:04
  • 8. Spring and its Types.mp4 00:07:36
  • 9. Selection of Water Sources.mp4 00:06:29
  • 1. Introduction.mp4 00:05:49
  • 2. Design and Base Period.mp4 00:06:36
  • 3. Types of Water Demand.mp4 00:07:38
  • 4. Types of Water Demand, Continued.mp4 00:06:13
  • 5. Variation in Water Demand.mp4 00:06:40
  • 6. Factor Affecting Demands of Water.mp4 00:05:39
  • 7. Population Forecasting Method (Arithmatical Increase Method).mp4 00:04:58
  • 8. Numerical 1 (Arithmatical Increase Method).mp4 00:05:50
  • 9. Geometrical Increase Method.mp4 00:03:29
  • 10. Numerical 2 (Geometrical increase Method).mp4 00:05:40
  • 11. Incremental Increase Method.mp4 00:04:08
  • 12. Numerical 3 (Incremental increase Method).mp4 00:06:31
  • 13. Decrease Rate of Growth Method.mp4 00:05:47
  • 14. Numerical 4 ( Decrease Rate of Growth Method).mp4 00:09:25
  • 15. Numerical 5 (Current Population).mp4 00:06:48
  • 16. Numerical 6 (Total Water Demand).mp4 00:09:20
  • 17. Numerical 6 (Total Water Demand), part2.mp4 00:04:33
  • 1. Impurities Present in Water.mp4 00:07:20
  • 2. Hardness.mp4 00:05:39
  • 3. Alkalinity.mp4 00:07:07
  • 4. Numerical on Hardness and Alkalinity.mp4 00:04:27
  • 5. Living Organism in Water, Part1.mp4 00:07:09
  • 6. Living Organism in Water, Part2.mp4 00:09:07
  • 7. Water Related Diseases.mp4 00:06:19
  • 8. Diesease Trasmission Route.mp4 00:05:01
  • 9. Examination of Water.mp4 00:07:21
  • 10. Physical Examination.mp4 00:07:11
  • 11. Chemical examination.mp4 00:09:12
  • 12. Biological Examination.mp4 00:06:04
  • 13. Multiple Tube Fermentation Technique.mp4 00:05:11
  • 14. Water Quality Standard.mp4 00:05:11
  • 1. Intake and its Site Selection.mp4 00:10:02
  • 2. Classification of Intake (Dry intake, Submerged and Exposed intake).mp4 00:06:56
  • 3. Wet Intake and River Intake.mp4 00:05:48
  • 4. Reservoir and Spring Intake.mp4 00:09:22
  • 1. Introduction and Objective of Water Treatment.mp4 00:08:06
  • 2. Treatment process and Impurity Removal.mp4 00:10:50
  • 3. Screening.mp4 00:07:09
  • 4. Plain Sedimentation.mp4 00:11:04
  • 5. Derivation for Settling Velocity of Discrete Particles, part1.mp4 00:06:21
  • 6. Derivation for Settling Velocity of Discrete Particles, part2.mp4 00:06:48
  • 7. Derivation for Settling Velocity of Discrete Particles, part3.mp4 00:05:57
  • 8. Temperature effect on Settlement and Newton Equation.mp4 00:06:05
  • 9. Numerical 1. Settling Velocity.mp4 00:07:30
  • 10. Ideal Sedimentation Tank.mp4 00:05:36
  • 11. Types of Sedimentation Tank.mp4 00:10:09
  • 12. Relation Between Settling Velocity and SOR.mp4 00:09:23
  • 13. Efficiency of Sedimentation Tank.mp4 00:06:55
  • 14. Design Criteria for Plain Sedimentation Tank.mp4 00:10:30
  • 15. Numerical 1. (Design of Sedimentation Tank).mp4 00:12:45
  • 16. Numerical 2. (Design of Sedimentation Tank).mp4 00:09:45
  • 17. Numerical 3. (Efficiency of Sedimentation Tank).mp4 00:09:12
  • 18. Sedimentation with Coagulation.mp4 00:05:55
  • 19. Common Coagulants.mp4 00:10:10
  • 20. Mixing Devices.mp4 00:06:41
  • 21. Mixing Basin with Mechanical Means.mp4 00:03:53
  • 22. Mixing Channel, Hydraulic Jump e.t.c.mp4 00:05:47
  • 23. Flocculation Tank.mp4 00:04:44
  • 24. Clarifier.mp4 00:05:24
  • 25. Jar Test.mp4 00:07:38
  • 26. Filtration and its Theory.mp4 00:11:54
  • 27. Slow Sand Filter (Components).mp4 00:16:32
  • 28. Slow Sand Filter (Working, Cleaning and Efficiency).mp4 00:08:01
  • 29. Design Criteria of Slow Sand Filter.mp4 00:06:54
  • 30. Numerical 4. (Design of Slow Sand Filter).mp4 00:11:22
  • 31. Rapid Sand Filter (General Introduction and Its Components).mp4 00:10:20
  • 32. Rapid Sand Filter (Working,Cleaning and Efficiency).mp4 00:13:21
  • 33. Rapid Sand Filter (Design Criteria).mp4 00:04:56
  • 34. Numerical 5. Design of Rapid Sand Filter.mp4 00:09:51
  • 35. Pressure Filter.mp4 00:07:24
  • 36. Numerical 6. Design of Pressure Filter.mp4 00:06:31
  • 37. Disinfection.mp4 00:03:51
  • 38. Chlorination.mp4 00:08:41
  • 39. Basic Terms of Chlorination.mp4 00:08:25
  • 40. Types of Chlorine.mp4 00:07:43
  • 41. Forms of Chlorination.mp4 00:08:13
  • 42. Break Point Chlorination (1).mp4 00:11:22
  • 42. Break Point Chlorination.mp4 00:11:22
  • 43. Super and Dechlorination.mp4 00:05:04
  • 44. Factor Affecting Efficiency of Chlorination.mp4 00:08:43
  • 45. Numerical 7. Chlorination.mp4 00:04:38
  • 47. Softening.mp4 00:07:42
  • 48. Removal of Permanent Hardness.mp4 00:05:51
  • 49. Zeolite Method.mp4 00:10:22
  • 50. Advantages and Disadvantages of Zeolite Method.mp4 00:05:32
  • 51. Ionization Method.mp4 00:05:35
  • 52. Miscellenous Treatment.mp4 00:04:25
  • 53. Method of Aeration.mp4 00:05:05
  • 54. Method of Aeration,part 2.mp4 00:03:06
  • 55. Removal of Iron and Manganese.mp4 00:04:48
  • 56. Removal of Colour Odour and Taste.mp4 00:09:06
  • 1. Introduction and System of Water Supply.mp4 00:10:39
  • 2. Requirements of Good Distribution System.mp4 00:03:14
  • 3. Reservoirs and Types.mp4 00:08:37
  • 4. Types of Service Reservoir.mp4 00:09:12
  • 5. Storage Capacity of Service Reservoir.mp4 00:10:26
  • 6. Numerical 1. Storage Capacity of Reservoir (Both Continuous).mp4 00:15:14
  • 7. Numerical 2. Storage Capacity (Inflow Continuous Outflow Intermittent).mp4 00:14:53
  • 8. Numerical 3. Storage Capacity (Inflow Intermittent Outflow Continuous).mp4 00:13:20
  • 9. Numerical 4. Storage Capacity (Inflow and Supply both Intermittent).mp4 00:09:52
  • 10. Layout of Distribution System.mp4 00:07:51
  • 12. Design of Distribution System.mp4 00:08:14
  • 13. Head Losses in Pipe Lines.mp4 00:07:05
  • 14. Head Losses in Pipe Lines (Manning's Equation).mp4 00:03:34
  • 15. Minor Head Losses.mp4 00:06:38
  • 16. Design Criteria of Distribution System.mp4 00:09:17
  • 17. Design Steps Of Distribution System.mp4 00:08:07
  • 18. Design of Pipe Network (Branch System).mp4 00:04:33
  • 19. Numerical 5. Pipe Design Using Branch System ,part1.mp4 00:14:31
  • 20. Numerical 5. Pipe Design Using Branch System ,part2.mp4 00:07:54
  • 21. Numerical 5. Pipe Design Using Branch System ,part3.mp4 00:07:22
  • 22. Looped System.mp4 00:05:49
  • 23. Head loss through Pipeline in Series.mp4 00:05:54
  • 24. Head Loss through Pipeline in Parallel.mp4 00:15:19
  • 25. Hardy Cross Method.mp4 00:03:51
  • 26. Balancing Head by Correcting Flow.mp4 00:10:26
  • 27. Numerical 6. Pipe Design Using Hardy Cross Method, part1.mp4 00:09:06
  • 28. Numerical 6. Pipe Design Using Hardy Cross Method, part2.mp4 00:10:11
  • 29. Numerical 6. Pipe Design Using Hardy Cross Method, part3.mp4 00:06:39
  • 30. Numerical 6. Pipe Design Using Hardy Cross Method, part4.mp4 00:06:53
  • 1. Introduction.mp4 00:08:23
  • 2. Types of Pipe Material (C.I and G.I Pipes).mp4 00:07:03
  • 3. Types of Pipe Material (Steel and PVC Pipes).mp4 00:06:18
  • 4. Types of Pipe Material (D.I and Concrete Pipes).mp4 00:07:45
  • 5. Pipe Joints.mp4 00:06:03
  • 6. Types of Pipe Joints.mp4 00:05:51
  • 7. Laying of Pipe Lines.mp4 00:08:46
  • 1. Valve, Its Use and Types.mp4 00:08:54
  • 2. Reflux and Air Release Valve.mp4 00:04:17
  • 3. Fitting and Its Types.mp4 00:07:58
  • 4. Water Meter and BPT.mp4 00:05:10
  • 5. Public Stand Post.mp4 00:08:39
  • 6. Maintenance of Water Supply System.mp4 00:10:20
  • 2076 Ashwin|Q.no. 1.mp4 00:05:30
  • 2076 Ashwin|Q.no. 2.mp4 00:02:53
  • 2076 Ashwin|Q.no. 3.mp4 00:09:21
  • 2076 Ashwin|Q.no. 4.mp4 00:04:59
  • 2076 Ashwin|Q.no. 5.mp4 00:06:45
  • 2076 Ashwin|Q.no. 6.a.mp4 00:04:55
  • 2076 Ashwin|Q.no. 6.b.mp4 00:10:41
  • 2076 Ashwin|Q.no. 6.c.mp4 00:07:14
  • 2076 Ashwin|Q.no. 7.a.mp4 00:20:14
  • 2076 Ashwin|Q.no. 8.mp4 00:03:17
  • 2076 Ashwin|Q.no. 9.mp4 00:02:53
  • 2076 Chaitra|Q.no. 1.mp4 00:01:51
  • 2076 Chaitra|Q.no. 2.mp4 00:02:35
  • 2076 Chaitra|Q.no. 3.mp4 00:10:51
  • 2076 Chaitra|Q.no. 4.a.mp4 00:03:01
  • 2076 Chaitra|Q.no. 4.b.mp4 00:04:09
  • 2076 Chaitra|Q.no. 5.mp4 00:06:24
  • 2076 Chaitra|Q.no. 6.a.mp4 00:07:15
  • 2076 Chaitra|Q.no. 6.b.mp4 00:10:01
  • 2076 Chaitra|Q.no. 7.a.mp4 00:04:58
  • 2076 Chaitra|Q.no. 7.b.mp4 00:15:37
  • 2076 Chaitra|Q.no. 8.mp4 00:05:17
  • 2076 Chaitra|Q.no. 9.mp4 00:02:57
  • 2078 Bhadra|Q.no. 1.mp4 00:02:32
  • 2078 Bhadra|Q.no. 2.mp4 00:02:15
  • 2078 Bhadra|Q.no. 3.mp4 00:12:38
  • 2078 Bhadra|Q.no. 4.a.mp4 00:03:01
  • 2078 Bhadra|Q.no. 4.b.mp4 00:05:19
  • 2078 Bhadra|Q.no. 5.mp4 00:01:58
  • 2078 Bhadra|Q.no. 6.a.mp4 00:06:57
  • 2078 Bhadra|Q.no. 6.b.mp4 00:09:03
  • 2078 Bhadra|Q.no. 6.c.mp4 00:04:31
  • 2078 Bhadra|Q.no. 7.a.mp4 00:01:24
  • 2078 Bhadra|Q.no. 7.b.mp4 00:08:33
  • 2078 Bhadra|Q.no. 8.mp4 00:02:29
  • 2078 Bhadra|Q.no. 9.mp4 00:02:49
  • 2078 Kartik|Q.no. 1.mp4 00:01:06
  • 2078 Kartik|Q.no. 2.mp4 00:03:05
  • 2078 Kartik|Q.no. 3.mp4 00:14:32
  • 2078 Kartik|Q.no. 4.a.mp4 00:02:27
  • 2078 Kartik|Q.no. 4.b.mp4 00:06:15
  • 2078 Kartik|Q.no. 5.mp4 00:03:48
  • 2078 Kartik|Q.no. 6.a.mp4 00:09:27
  • 2078 Kartik|Q.no. 6.b.mp4 00:06:38
  • 2078 Kartik|Q.no. 6.c.mp4 00:05:19
  • 2078 Kartik|Q.no. 7.a.mp4 00:01:53
  • 2078 Kartik|Q.no. 7.b.mp4 00:08:52
  • 2078 Kartik|Q.no. 8.mp4 00:02:10
  • 2078 Kartik|Q.no. 9.mp4 00:01:00
  • 2079 Baisakh|Q.no. 1.mp4 00:02:08
  • 2079 Baisakh|Q.no. 2.mp4 00:04:29
  • 2079 Baisakh|Q.no. 3.mp4 00:08:13
  • 2079 Baisakh|Q.no. 4.a.mp4 00:02:01
  • 2079 Baisakh|Q.no. 4.b.mp4 00:04:23
  • 2079 Baisakh|Q.no. 5.mp4 00:04:09
  • 2079 Baisakh|Q.no. 6.a.mp4 00:07:47
  • 2079 Baisakh|Q.no. 6.b.mp4 00:07:56
  • 2079 Baisakh|Q.no. 6.c.mp4 00:04:45
  • 2079 Baisakh|Q.no. 7.a.mp4 00:11:09
  • 2079 Baisakh|Q.no. 7.b.mp4 00:07:29
  • 2079 Baisakh|Q.no. 8.mp4 00:02:02
  • 2079 Baisakh|Q.no. 9.mp4 00:02:40
Requirements
  • Students are required to have knowledge of Fluid Mechanics 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 Water Supply Engineering, with most frequently asked questions and solutions in the final exam of BE. 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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