Consider a pump-pipeline system that delivers flow from reservoir A to = 100 ft and Eg= 120 ft. The pipe has a length of L= 2,800 ft, diameter and a Hazen Williams coefficient of CHW= 100. The pump characteristic %3D COO1

Structural Analysis
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Chapter2: Loads On Structures
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Consider a pump-pipeline system that delivers flow from reservoir A to B with EA
= 100 ft and En = 120 ft. The pipe has a length of L = 2,800 ft, diameter of D= 2 ft,
and a Hazen Williams coefficient of CHw = 100. The pump characteristics are
tabulated below and minor losses (in feet) accumulate at the rate of 0.01*Q? where
Q is the flow in cfs. Estimate the flow rate and the velocity in the pipeline.
Hp Pump (ft)
55
53
47
Q (cfs).
10
20
30
38
40
22
Transcribed Image Text:Consider a pump-pipeline system that delivers flow from reservoir A to B with EA = 100 ft and En = 120 ft. The pipe has a length of L = 2,800 ft, diameter of D= 2 ft, and a Hazen Williams coefficient of CHw = 100. The pump characteristics are tabulated below and minor losses (in feet) accumulate at the rate of 0.01*Q? where Q is the flow in cfs. Estimate the flow rate and the velocity in the pipeline. Hp Pump (ft) 55 53 47 Q (cfs). 10 20 30 38 40 22
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