If oil with a kinematic viscosity of 0.005 ft^2/s weighs 54 lb/ft^3, what will be the flow rate and head loss in a 3600-ft length of 4 - in diameter pipe when the Reynolds number is 800? (Note: for friction factor, use f =64/R where R is the Reynolds Number) 5.56 1.047 2269 1932 Flow Rate O O O

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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If oil with a kinematic viscosity of 0.005 ft^2/s weighs 54 lb/ft^3, what will
be the flow rate and head loss in a 3600-ft length of 4 - in diameter pipe
when the Reynolds number is 800? (Note: for friction factor, use f =64/R
where R is the Reynolds Number)
5.56
2269
1932
Flow Rate
O
Ⓒ
Transcribed Image Text:If oil with a kinematic viscosity of 0.005 ft^2/s weighs 54 lb/ft^3, what will be the flow rate and head loss in a 3600-ft length of 4 - in diameter pipe when the Reynolds number is 800? (Note: for friction factor, use f =64/R where R is the Reynolds Number) 5.56 2269 1932 Flow Rate O Ⓒ
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