A pumped fluid distribution system is being designed to deliver 400 gal/min of water to a cooling system in a power generation plant. Use the figure below to make an initial selection of Schedule 40 pipe sizes for the suction and discharge lines for the system. Also, solve for the actual average velocity of flow for each pipe. DN (mm) NPS (in

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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8. A pumped fluid distribution system is being designed to deliver 400 gal/min of water to a
cooling system in a power generation plant. Use the figure below to make an initial selection
of Schedule 40 pipe sizes for the suction and discharge lines for the system. Also, solve for
the actual average velocity of flow for each pipe.
DN (mm) NPS (in)
250
200
150 -
125 -
Suction lines
100 -
90 -
3
65 -
2
50
Discharge lines
40
32E
25 E
15 20
200
400
600 800
1000
2000
4000
6000 8000
10000
10
100
Volume Flow Rate, Q (gal/min)
6 8 10
++++
15 20 25 30 40
+++++++++ ++++++++++++
60
80 100
150 200
300 400 500600 800 1000 1200 2000
Volume Flow Rate, Q (m/h)
Transcribed Image Text:8. A pumped fluid distribution system is being designed to deliver 400 gal/min of water to a cooling system in a power generation plant. Use the figure below to make an initial selection of Schedule 40 pipe sizes for the suction and discharge lines for the system. Also, solve for the actual average velocity of flow for each pipe. DN (mm) NPS (in) 250 200 150 - 125 - Suction lines 100 - 90 - 3 65 - 2 50 Discharge lines 40 32E 25 E 15 20 200 400 600 800 1000 2000 4000 6000 8000 10000 10 100 Volume Flow Rate, Q (gal/min) 6 8 10 ++++ 15 20 25 30 40 +++++++++ ++++++++++++ 60 80 100 150 200 300 400 500600 800 1000 1200 2000 Volume Flow Rate, Q (m/h)
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