Water is taken from a large reservoir by means of a pipe as shown below. The turbine extracts 10 m of head from the system and water discharges out at point B. The head loss in the pipe is formulized as; 2*(V^2)/2g, where V is the average velocity in the pipe. Determine the discharge in the system Determine the turbine power if n= 0.8. Plot EGL and HGL of the system. a) b) c) 40 m INTLUID WILLIANICO MunicholsTIR TOREITERA D- 0.1 m B D2S Deildi 15m

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Water is taken from a large reservoir by means of a pipe as shown below. The turbine extracts 10 m of head
from the system and water discharges out at point B. The head loss in the pipe is formulized as; 2*(V^2)/2g,
where V is the average velocity in the pipe.
Determine the discharge in the system
Determine the turbine power if n= 0.8.
Plot EGL and HGL of the system.
a)
b)
c)
40 m
INTLUID MILLTANICO IvanichiuISTIR TARGITEST TEGE
D- 0.1 m
B
DES DElidi
15 m
Transcribed Image Text:Water is taken from a large reservoir by means of a pipe as shown below. The turbine extracts 10 m of head from the system and water discharges out at point B. The head loss in the pipe is formulized as; 2*(V^2)/2g, where V is the average velocity in the pipe. Determine the discharge in the system Determine the turbine power if n= 0.8. Plot EGL and HGL of the system. a) b) c) 40 m INTLUID MILLTANICO IvanichiuISTIR TARGITEST TEGE D- 0.1 m B DES DElidi 15 m
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