Flow from reservoir A is 43 l/s (n = 0.011 in all pipes) Use conventional solution. A) Compute QB and QE B) Compute for the Extracted Energy caused by the turbine DE if the pressure head at E is -3 m. neglect velocity head Hint: Use Bernoulli’s Equation for A to E

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Flow from reservoir A is 43 l/s (n = 0.011 in all pipes) Use conventional solution.

A) Compute QB and QE

B) Compute for the Extracted Energy caused by the turbine DE if the pressure head at E is -3 m. neglect velocity head
Hint: Use Bernoulli’s Equation for A to E

In the figure shown, flow from reservoir A is 43 L/s (n = 0.011 in all pipes) Use conventional solution.
A) Compute Q and QE
B) Compute for the Extracted Energy caused by the turbine DE if the pressure head at E is -3 m. neglect velocity head
Hint: Use Bernoulli's Equation for A to E
VEL 67.26 m
C
3
T
VEL 66.46 m
B
EL 24.39 m
E
Q₁ = 0.9651 m³/s = Q. Q = 0.5351 m³/s supplier, HE = 233.18 kW
Pipe
1
2
W|N
3
4
Diameter Length
(mm)
in (m)
0.011
500
1800
0.011 500 2440
0.011
750
0.011
750
n
2440
3050
Transcribed Image Text:In the figure shown, flow from reservoir A is 43 L/s (n = 0.011 in all pipes) Use conventional solution. A) Compute Q and QE B) Compute for the Extracted Energy caused by the turbine DE if the pressure head at E is -3 m. neglect velocity head Hint: Use Bernoulli's Equation for A to E VEL 67.26 m C 3 T VEL 66.46 m B EL 24.39 m E Q₁ = 0.9651 m³/s = Q. Q = 0.5351 m³/s supplier, HE = 233.18 kW Pipe 1 2 W|N 3 4 Diameter Length (mm) in (m) 0.011 500 1800 0.011 500 2440 0.011 750 0.011 750 n 2440 3050
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