FME04 Orifice Discharge

ORIFICE DISCHARGE - FME04

Complete FME04 Unit

ORIFICE DISCHARGE - FME04

INNOVATIVE SYSTEMS

The module consists of a transparent cylindrical tank that is fed from the top by the Hydraulics Bench (FME00) or the Basic Hydraulic Feed System(FME00/B).

See general description

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General Description

The module consists of a transparent cylindrical tank that is fed from thetop by the Hydraulics Bench (FME00) or the Basic Hydraulic Feed System(FME00/B). The water flows through an interchangeable mouthpiece (aset of 5 mouthpieces is supplied, representing orifices of differentcharacteristics) located in the base center. The liquid flowing vein goesdirectly to the volumetric tank of the Hydraulics Bench or from the BasicHydraulic Feed System.

A Pitot’s tube can be placed in any point of the flowing vein to determineits total height of load.

A transverse device, joined to the Pitot’s tube, allows to determine thediameter of the liquid flowing vein.

It´s possible to measure the height of the Pitot’s tube and the total heightthrough the orifice, in a panel of 2 manometric tubes located beside thetank.

Exercises and guided practices

GUIDED PRACTICAL EXERCISES INCLUDED IN THE MANUAL

  1. Determination of the discharge coefficient for the mouthpiece ofthin wall, Venturi type.
  2. Determination of the velocity coefficient for the mouthpiece of thinwall, Venturi type.
  3. Determination of the contraction coefficient for the mouthpiece ofthin wall, Venturi type.
  4. Determination of the discharge coefficient for the mouthpiece ofthin wall, diaphragm type.
  5. Determination of the velocity coefficient for the mouthpiece of thinwall, diaphragm type.
  6. Determination of the contraction coefficient for the mouthpiece ofthin wall, diaphragm type.
  7. Determination of the discharge coefficient for the mouthpiece ofthin wall, colloidal type.
  8. Determination of the velocity coefficient for the mouthpiece of thinwall, colloidal type.
  9. Determination of the contraction coefficient for the mouthpiece ofthin wall, colloidal type.
  10. Determination of the discharge coefficient for the mouthpiece ofthick wall, cylindrical type.
  11. Determination of the velocity coefficient for the mouthpiece of thickwall, cylindrical type.
  12. Determination of the contraction coefficient for the mouthpiece ofthick wall, cylindrical type.
  13. Determination of the discharge coefficient for the mouthpiece ofthick wall, Venturi type.
  14. Determination of the velocity coefficient for the mouthpiece of thickwall, Ventury type.
  15. Determination of the contraction coefficient for the mouthpiece ofthick wall, Ventury type.

REQUIRED ELEMENTS

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