.In a water supply scheme to be designed for serving a population of 400000, the storage reservoir is situated at 8 km away from the city and the loss of head from the source to the city is 16 m. Calculate the size of the supply main using Weisbach formula as well as by using Hazen's formula assuming a maximum daily demand of 200 /c/d and half of the daily supply to be pumped in 8 hours. Assume the coefficient of friction for the pipe material as 0.012 in Weisbach formula, and CH= 130 in Hazen's formula

Structural Analysis
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Chapter2: Loads On Structures
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2. In a water supply scheme to be designed for serving a population of 400000, the storage
reservoir is situated at 8 km away from the city and the loss of head from the source to
the city is 16 m. Calculate the size of the supply main using Weisbach formula as well as
by using Hazen's formula assuming a maximum daily demand of 200 /c/d and half of the
daily supply to be pumped in 8 hours. Assume the coefficient of friction for the pipe
material as 0.012 in Weisbach formula, and CH 130 in Hazen's formula
%3D
Transcribed Image Text:2. In a water supply scheme to be designed for serving a population of 400000, the storage reservoir is situated at 8 km away from the city and the loss of head from the source to the city is 16 m. Calculate the size of the supply main using Weisbach formula as well as by using Hazen's formula assuming a maximum daily demand of 200 /c/d and half of the daily supply to be pumped in 8 hours. Assume the coefficient of friction for the pipe material as 0.012 in Weisbach formula, and CH 130 in Hazen's formula %3D
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