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EPC Products Teaching and Research Laboratory Equipment Fluid Science FS-1.2 Energy Losses in Straight Pipes
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FS-1.2 Energy Losses in Straight Pipes

Model:FS-1.2

Use:The Fluid Science FS-1.2 Energy Losses in Straight Pipes Tray provides hands on experimentation designed to demonstrate energy losses due to the geometry of the flow path at different flow rates.

Standard:

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Description

The Fluid Science range is an innovative suite of products designed to demonstrate energy losses due to the geometry of the flow path.

This enables students to gain an understanding of the fundamentals of Fluid Mechanics and Thermo Fluids by the process of learning via hands-on experimentation.

The Fluid Science Energy Losses in Straight Pipes Tray includes experiments to measure the pressure drop across an expansion and contraction and an internal artificially roughened pipe. All except the stepped pipe test section are of the same cross section, enabling meaningful comparisons to be made. The additional energy losses due to the geometry of the flow path can be clearly seen at different flow rates and the relationship to theory can be established.




Features

  • Smooth and Roughened pipe 6mm diameter
  • Contraction and expansion 8mm – 4mm – 8mm diameters
  • Differential pressure reading obtained using digital manometer
  • Highly visual design

Benefits

  • Applied student learning via experimentation
  • Common service unit can be used for either hot or cold-water supply
  • Tool-less assembly
  • Designed to be highly visual and simple to use
  • Quick setup
  • Suitable for both classroom and laboratory environment



Demonstration Capabilities

  • Explanation of basic principles such as conservation of mass
  • Conservation of energy
  • Explain energy loss and frictional loss
  • Types of flow steady and unsteady flow, uniform and non-uniform flow etc.
  • Types of fluid flow regime i.e. laminar, turbulent and transitional flow
  • Compare measured pressure drop from 3 different pipe forms, explaining the effect of geometry on pressure drop.
  • Using Bernoulli’s equation, calculate the pressures and compare results with experimental values.
  • Calculate the frictional head loss and pressure drop using
  • Darcy’s equation


Project Case
Solution
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Energy Losses in Straight Pipes