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Experiment (3) Impact of jet

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Experiment (3) Impact of jet. By: Eng. Motasem M. Abushaban. Eng. Fedaa M. Fayyad . Rate of flow . Impulse momentum equation. Impulse momentum equation. Resultant force acting on the fluid is made up of three components: F 1 = F R : by any solid body touching the control volume - PowerPoint PPT Presentation
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EXPERIMENT (3) IMPACT OF JET By: Eng. Motasem M. Abushaban. Eng. Fedaa M. Fayyad.
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Page 1: Experiment (3) Impact  of jet

EXPERIMENT (3)

IMPACT OF JET

By:Eng. Motasem M. Abushaban.

Eng. Fedaa M. Fayyad.

Page 2: Experiment (3) Impact  of jet

RATE OF FLOW

Rate of flow

Volume rate of flow

Mass rate of flow

Page 3: Experiment (3) Impact  of jet

IMPULSE MOMENTUM EQUATION

12

12

vvmFvvQF

Page 4: Experiment (3) Impact  of jet

IMPULSE MOMENTUM EQUATION

Resultant force acting on the fluid is made up of three components:

1. F1 = FR: by any solid body touching the control volume

2. F2 = FB: body force such as gravity3. F3 = FP: fluid Pressure

The Force exerted by the fluid on the solid body is opposite to FR

The reaction force R is given by: R = - FR

Page 5: Experiment (3) Impact  of jet

APPLICATION OF THE MOMENTUM EQUATION

Impact of a jet on a plane surface Force due to flow round a curved vane Force due to the flow of fluid round a pipe

bend Reaction of a jet

Page 6: Experiment (3) Impact  of jet
Page 7: Experiment (3) Impact  of jet

PURPOSE To investigate the reaction force produced by

the impact of a jet of water on various target vanes.

Impact Jet Apparatus

Page 8: Experiment (3) Impact  of jet

PROCEDURE: Position the weight carrier on the weight platform and

add weights until the top of the target is clear of the stop and the weight platform is floating in mid position.

Start the pump and establish the water flow by steadily opening the bench regulating valve until it is fully open.

The vane will now be deflected by the impact of the jet. Place additional weights onto the weight carrier until the

weight platform is again floating in mid position. Measure the flow rate (volume collected in certain time)

and record the result on the test sheet, together with the corresponding value of additional weight on the tray.

Observe the form of the deflected jet and note its shape.

Page 9: Experiment (3) Impact  of jet

PROCEDURE: Reduce the weight on the weight carrier in steps

and maintain balance of the weight platform by regulating the flow rate in about eight or ten even steps.

Close the control valve and switch off the pump. Allow the apparatus to drain.

Replace the 5mm nozzle with the 8mm diameter nozzle and repeat the tests.

Replace the normal vane with the conical vane and repeat the test with both the 5mm and 8mm nozzles.

Replace the conical vane with the hemispherical vane and repeat the test with both the 5mm and 8mm nozzles.

Page 10: Experiment (3) Impact  of jet

DATA & RESULTS:

Target Vanes (degrees)

Nozzle Dia -- d -- (mm)

Additional Weights -- m -- (gm)

Volume of Collected water - V - (Liter)

Time to collect -- t --

(sec)

°5

90 θ=

Flat 8

°545

θ=

Conical 8

°

5135

θ=

Semi-spherical 8

Page 11: Experiment (3) Impact  of jet
Page 12: Experiment (3) Impact  of jet

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QUESTIONS


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