Q1 Given is a three-pipe series system, as in Fig. The total pressure drop is py — ps = 150,000 Pa, and the elevation drop is z4 — 25 = 5 m. The pipe data are Pipe L.om d, em e mm eld 1 100 8 024 0.003 2 150 6 0.12 0.002 3 80 4 0.20 0.005 The fluid is water, p = 1000 kg/m’ and v = 1.02 X 10~° m%s. Calculate the flow rate Q in mh through the system. o © 0O Al — —_— —

Structural Analysis
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Q1 Given is a three-pipe series system, as in Fig. The total pressure drop is py — ps = 150,000 Pa, and the elevation drop is z4 — 25 = 5 m. The pipe data are Pipe L.om d, em e mm eld 1 100 8 024 0.003 2 150 6 0.12 0.002 3 80 4 0.20 0.005 The fluid is water, p = 1000 kg/m’ and v = 1.02 X 10~° m%s. Calculate the flow rate Q in mh through the system. o © 0O Al — —_— — B T U
Q1)
Given is a three-pipe series system, as in Fig.
150,000 Pa, and the elevation drop is ZA - ZB = 5 m. The pipe data are
The total pressure drop is pa - PB =
Pipe
L, m
d, cm
€, mm
eld
1
100
8
0.24
0.003
2
150
6.
0.12
0.002
3
80
4
0.20
0.005
The fluid is water, p
1000 kg/m and v = 1.02 x 10-6 m/s. Calculate the flow rate
Q in m/h through the system.
(3
(2
A
B
Transcribed Image Text:Q1) Given is a three-pipe series system, as in Fig. 150,000 Pa, and the elevation drop is ZA - ZB = 5 m. The pipe data are The total pressure drop is pa - PB = Pipe L, m d, cm €, mm eld 1 100 8 0.24 0.003 2 150 6. 0.12 0.002 3 80 4 0.20 0.005 The fluid is water, p 1000 kg/m and v = 1.02 x 10-6 m/s. Calculate the flow rate Q in m/h through the system. (3 (2 A B
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