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1

Flow of Liquids Through Pipes, Fittings and Valves

سرفصل های دوره

Master Piping Systems: Equipment, Design, Operation & Energy Optimization


1. Introduction
  • 1. WelcomeTrailer
  • 2. Before you Start - Course Overview
  • 3. Fluid Mechanics Series - Course Structure.html
  • 4. About this Course
  • 5. Introduction to Piping Systems. Why We Need Piping systems
  • 6. Basic Review of Topics + Mechanical Energy Equation Review

  • 2. All About Pipes Types, Materials & Standards
  • 1. All About Pipes
  • 2. Pipes, Piping, Pipeline, Piping Systems
  • 3. Pipe Selection Criteria
  • 4. Piping Materials & Piping Standards (ASTM, API, B88, etc...)
  • 5. Pipe Sizing (ASME, BWG and Others)
  • 6. Context of Material Roughnes
  • 7. Common Piping Problems & Troubleshooting
  • 8. Closure of Pipes

  • 3. Fittings & Valves Used in Piping Systems
  • 1. Introduction to Fittings & Valves!
  • 2. Common Accesories Found in Piping Systems Fittings & Valves
  • 3. Accesories that Wont Affect Fluid Flow Pipe Hangers, Base, Shoes, etc.
  • 4. Fittings that Affect Fluid Flow Expanders, Contractors, Elbows, Reducers, etc.
  • 5. What Are Valves Why We Need Them in the Industry
  • 6. Common Industrial Valves Ball, Globe, Gate, Butterfly, Check, Safety Valves & M
  • 7. Problems & Troubleshooting of Fittings & Valves
  • 8. Section Closure - Fittings & Valves

  • 4. Fundamentals of Fluid Flow in Pipes (REVIEW)
  • 1. Introduction to Fluid Flow in Pipes
  • 2. Reynolds Number and Types of Flow
  • 3. Types of Flow Laminar, Transient & Turbulent
  • 4. Turbulent Flow (Theory + Exercise)
  • 5. Special Case Plug Flow
  • 6. Relative Roughness - What is it
  • 7. Non-Cylindrical Pipes Hydraulic Radius and Equivalent Diameter
  • 8. Exercises Non-Cylindrical Pipes Hydraulic Radius and Equivalent Diameter
  • 9. Closure of Fluid Flow in Pipes

  • 5. Friction Loss in Pipes (a.k.a. Head Loss or Pressure Loss) Hfs
  • 1. Introduction to Friction Loss in Pipes (Hfs)
  • 2. What Is Friction How Is It Related to Head Loss
  • 3. Introduction to the Friction Factor - (Darcy's and Fanning Models in Laminar and
  • 4. How to Read Moodys Chart for Friction Factor - Theory and Exercise
  • 5. Friction Factor Equations Chen, Swamee Jain, Hazen Williams & More!
  • 6. NOTE Energy Loss vs Friction Factor
  • 7. Energy Loss due to Pipe Wall Friction - Theory and Exercises
  • 8. Closure to Friction Loss in Pipes

  • 6. Friction Loss in Fittings & Valves (Hff)
  • 1. Introduction to Friction Loss due to Fittings & Valves (Hff)
  • 2. Friction Loss in Fittings & Valves - Theory & Exercises
  • 3. K Constant for Fittings & Valves - Theory & Exercises
  • 4. NOTE Why relating to Equivalent Lenght is Important
  • 5. How to Relate Friction due to Fittings to Pipe Wall (Hfs and Hff) + Exercise
  • 6. Putting it All Together Friction Loss due to Pipe Walls, Fittings and Valves
  • 7. Closure of Friction Loss due to Fittings & Valves

  • 7. Solved Problems Liquid Flow through Pipes, Fittings & Valves
  • 1. Introduction to Friciton Loss in Piping Systems
  • 2. Basics & Reynolds Number.html
  • 3. Ex. 043 Relationship Between Volumetric Flow Rate, Area and Velocity (Basic Engi
  • 4. Ex. 045 Continuity Equation Application (Basic Eng)
  • 5. Ex. 046 Relating Velocity and Volumetric Flow to Get the Pipes Diameter (Basic E
  • 6. Ex. 047 Continuity Equation Applied to a Pipe Reduction
  • 7. Ex. 049 Interesting Pressure Drop in an Expanded Pipe (Bernoulli)
  • 8. Ex. 052 Relating Pressure Drop With Velocities (Bernoulli)
  • 9. Ex. 053 Pressure Drops Due to Velocity Changes (Bernoulli)
  • 10. Ex. 020 Reynolds Number and Pressure Drop in a Non-Cylindrical Pipe
  • 11. Ex. 061 Identifying Type of Flow Laminar or Turbulent Flow
  • 12. Ex. 063 Minimum Pipe Diameter Given Different Operation Fluids (Reynolds Number)
  • 13. Ex. 065 Transient State Flow in a Pipe (Reynolds Number)
  • 14. S6L03 Friction Loss in Pipes.html
  • 15. Ex. 068 Friction Loss in a Long Pipe (Friction Loss Type I)
  • 16. Ex. 073 Using Chens Equation for Friction Factor (Friction Factor Equations)
  • 17. Ex. 075 Hazen Williams Equation (Friction Factor Equations & Friction Loss)
  • 18. Friction Loss in Fittings & Valves.html
  • 19. Ex. 059 Calculating K Value With Experimental Data (Friction Due to Valves)
  • 20. Ex. 087 Friction Loss Due to a Pipe Connected to a Vessel (Friction Loss in Fitt
  • 21. Ex. 089 Friction Loss Due to Gradual Expansion of 60 (Friction Loss due to Fitt
  • 22. Ex. 091 Friction Loss in a Sudden Contraction (Friction Loss in Fittings)
  • 23. Ex. 093 Pipe Entrace Edge Effect on Friction Loss (Friction Factor in Fittings)
  • 24. Ex. 097 Pressure Drop Due to a Street Elbow (Friction Loss in Fittings)
  • 25. Closure to Friction Loss in Piping Systems

  • 8. Closure
  • 1. Course Content Review & Closure
  • 2.1 20OFF Bonus Lecture.pdf
  • 2. FINAL BONUS.html
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    تاریخ انتشار: ۱۲ خرداد ۱۴۰۳
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