At a water treatment plant, water (68°F) flows from tank 1 to tank 2 at a rate of 0.60 cfs through a 3.00-in.-diameter, cast-iron pipe that is 115 feet long. The tanks are open to the atmosphere and there are two bends (R/D = 2.0) and a fully open gate valve in the pipeline. Determine the Friction Factor for the flow between tanks. D = 3.00 in L = 115 ft Q 0.60 ft^3/s %3D
At a water treatment plant, water (68°F) flows from tank 1 to tank 2 at a rate of 0.60 cfs through a 3.00-in.-diameter, cast-iron pipe that is 115 feet long. The tanks are open to the atmosphere and there are two bends (R/D = 2.0) and a fully open gate valve in the pipeline. Determine the Friction Factor for the flow between tanks. D = 3.00 in L = 115 ft Q 0.60 ft^3/s %3D
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:At a water treatment plant, water (68°F) flows from tank 1 to tank 2 at a rate of 0.60
cfs through a 3.00-in.-diameter, cast-iron pipe that is 115 feet long. The tanks are
open to the atmosphere and there are two bends (R/D = 2.0) and a fully open gate
valve in the pipeline.
Determine the Friction Factor for the flow between tanks.
D =
3.00
in
L =
115
ft
Q =
0.60
ft^3/s
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