a) Apply Hazen William's Equation to the pumped system shown in the following figure, having a pumping head of 77 mwc. Determine diameter of the pipe to deliver a flow of Q-4000 m 3 /hr maintaining pressure of 50 mwc at the entrance of the city through a pipe of L -1200m having Hazen William's roughness coefficient C-120. Also calculate increase in the flow when the pressure at the entrance of the eity drop to 40 mwe.
a) Apply Hazen William's Equation to the pumped system shown in the following figure, having a pumping head of 77 mwc. Determine diameter of the pipe to deliver a flow of Q-4000 m 3 /hr maintaining pressure of 50 mwc at the entrance of the city through a pipe of L -1200m having Hazen William's roughness coefficient C-120. Also calculate increase in the flow when the pressure at the entrance of the eity drop to 40 mwe.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Q.6
a) Apply Hazen William's Equation to the pumped system shown in the following
figure, having a pumping head of 77 mwc. Determine diameter of the pipe to
deliver a flow of Q-4000 m 3 /hr maintaining pressure of 50 mwc at the entrance
of the city through a pipe of L =1200m having Hazen William's roughness
coefficient C=120. Also calculate increase in the flow when the pressure at the
entrance of the city drop to 40 mwc.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F30aa5db2-6409-4e70-aa38-24aea2680554%2F1ac2707f-36e0-4dcf-8fcb-a37728a319d9%2Foo47pln_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q.6
a) Apply Hazen William's Equation to the pumped system shown in the following
figure, having a pumping head of 77 mwc. Determine diameter of the pipe to
deliver a flow of Q-4000 m 3 /hr maintaining pressure of 50 mwc at the entrance
of the city through a pipe of L =1200m having Hazen William's roughness
coefficient C=120. Also calculate increase in the flow when the pressure at the
entrance of the city drop to 40 mwc.
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