Through the two pipes in Figure 6 flow equal flows of water. data: Pipe diameter No. 1: 200 mm - Pipe diameter No. 2: 150 mm Longitudinal coefficient of friction of pipe No. 1: 0.06 Longitudinal coefficient of friction of pipe No. 2: 0.02 - Water velocity through pipe No. 1: sec/m 1 - The pressure difference between points A and B: bar 0.1 a. Calculate the flow through each of the pipes [sec / liter. [ b. Calculate the length of each of the pipes. c. Calculate the equivalent length of the pipe system for a diameter of 200 mm and a coefficient of friction of 0.03 lengths

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Through the two pipes in Figure 6 flow equal flows of water.
data:
Pipe diameter No. 1: 200 mm
- Pipe diameter No. 2: 150 mm
Longitudinal coefficient of friction of pipe No. 1: 0.06
Longitudinal coefficient of friction of pipe No. 2: 0.02
- Water velocity through pipe No. 1: sec / m 1
- The pressure difference between points A and B: bar 0.1
a. Calculate the flow through each of the pipes [sec / liter. [
b. Calculate the length of each of the pipes.
c. Calculate the equivalent length of the pipe system for a diameter of
200 mm and a coefficient of friction of 0.03 lengths
Transcribed Image Text:Through the two pipes in Figure 6 flow equal flows of water. data: Pipe diameter No. 1: 200 mm - Pipe diameter No. 2: 150 mm Longitudinal coefficient of friction of pipe No. 1: 0.06 Longitudinal coefficient of friction of pipe No. 2: 0.02 - Water velocity through pipe No. 1: sec / m 1 - The pressure difference between points A and B: bar 0.1 a. Calculate the flow through each of the pipes [sec / liter. [ b. Calculate the length of each of the pipes. c. Calculate the equivalent length of the pipe system for a diameter of 200 mm and a coefficient of friction of 0.03 lengths
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2
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Transcribed Image Text:1 2 B
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