Find the water flow distribution in the parallel system shown in the figure below by using Newton- Raphson Method (use one iteration only). Assume constant friction factors, with f 0.02.The pump Power is 799.68 Kw. (Assume initial Q= 4 m'/sec, Q;= 2.4 m'/sec, and Q,= 0.6 m/sec) I (m) D (mm) 121 el 20 m Pipe el 0m 100 350 750 200 3 850 200 200 2. 14) 350 250 2
Find the water flow distribution in the parallel system shown in the figure below by using Newton- Raphson Method (use one iteration only). Assume constant friction factors, with f 0.02.The pump Power is 799.68 Kw. (Assume initial Q= 4 m'/sec, Q;= 2.4 m'/sec, and Q,= 0.6 m/sec) I (m) D (mm) 121 el 20 m Pipe el 0m 100 350 750 200 3 850 200 200 2. 14) 350 250 2
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:Find the water flow distribution in the parallel system shown in the figure below by using Newton-
Raphson Method (use one iteration only). Assume constant friction factors, with f 0.02.The
pump Power is 799.68 Kw. (Assume initial Q= 4 m/sec, Q,= 2.4 m/sec, and Q,= 0.6 m/sec)
%3D
Pipe
I (m)
D (mm)
21
el 20 m
el 0m
100
350
750
200
200
200
850
S00
A
14)
350
250
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