The mechanism shown in figure is used to investigate the power produced by Pelton wheel turbine. Given: wheel diameter D-7.5 cm, Nozzle diameter d;=1 cm, flow rate =1.5 litter/s, speed D= 0.4, nozzle velocity and turbine coefficient Cv=0.95 efficiency=80%. Find the force F required for stopping the wheel.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Turbomachinery
The mechanism shown in figure is
used to investigate the power produced
by Pelton wheel turbine. Given: wheel
diameter D=7.5 cm, Nozzle diameter
d;=1 cm, flow rate =1.5 litter/s, speed Pelton
Q= 0.4, nozzle velocity
and turbine
Brake shoe
wheel
Spring
coefficient
Cv=0.95
d;
D/2
efficiency=80%. Find the force F
required for stopping the wheel.
F15 cm
Transcribed Image Text:The mechanism shown in figure is used to investigate the power produced by Pelton wheel turbine. Given: wheel diameter D=7.5 cm, Nozzle diameter d;=1 cm, flow rate =1.5 litter/s, speed Pelton Q= 0.4, nozzle velocity and turbine Brake shoe wheel Spring coefficient Cv=0.95 d; D/2 efficiency=80%. Find the force F required for stopping the wheel. F15 cm
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