Assuming that there are no energy losses in the system, calculate the volume flow rate through the siphon and the pressure at points B to E. PA= 0 1.2 m v=0 Pipe 40-mm inside diameter 1.8 m 25-mm diameter 1.2 m Pr=0 E- Flow

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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FIOURE A9 Siphon for Example Problem 6.10. Figure below shows a siphon that is used to
draw water from a swimming pool. The tube that makes up the siphon
has an ID of 40 mm and terminates with 25-mm diameter nozzle.
Assuming that there are no energy losses in the system, calculate the
volume flow rate through the siphon and the pressure at points B to E.
P =0
1.2 m vA=0
D
Pipe
40-mm inside diameter
1.8 m
25-mm diameter
1.2 m
Pp=0
TE, = TE,
FE, + PE, + KE = FE; + PE; + KE
PAN * Za + Va?/2g = PrN + Z, + V,/2g
Q= AV = A,V, =
11
Flow
Transcribed Image Text:FIOURE A9 Siphon for Example Problem 6.10. Figure below shows a siphon that is used to draw water from a swimming pool. The tube that makes up the siphon has an ID of 40 mm and terminates with 25-mm diameter nozzle. Assuming that there are no energy losses in the system, calculate the volume flow rate through the siphon and the pressure at points B to E. P =0 1.2 m vA=0 D Pipe 40-mm inside diameter 1.8 m 25-mm diameter 1.2 m Pp=0 TE, = TE, FE, + PE, + KE = FE; + PE; + KE PAN * Za + Va?/2g = PrN + Z, + V,/2g Q= AV = A,V, = 11 Flow
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