A pipe system, connecting two reservoirs whose difference in water surface elevation is h= 28 m, consists of 413 m of 906 mm diameter pipe (pipe 1), branching into 881 m of 522 mm diameter pipe (pipe 2) and 765 m of 381 mm diameter pipe (pipe 3) in parallel, which join again to a single 1700 mm diameter line 733 m long (pipe 4). Assuming f= 0.0612 for all pipes, determine the flow rate in pipe 1. Round your answer to 3 decimal places.
A pipe system, connecting two reservoirs whose difference in water surface elevation is h= 28 m, consists of 413 m of 906 mm diameter pipe (pipe 1), branching into 881 m of 522 mm diameter pipe (pipe 2) and 765 m of 381 mm diameter pipe (pipe 3) in parallel, which join again to a single 1700 mm diameter line 733 m long (pipe 4). Assuming f= 0.0612 for all pipes, determine the flow rate in pipe 1. Round your answer to 3 decimal places.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A pipe system, connecting two reservoirs whose difference in water surface elevation is h= 28 m, consists of 413 m of 906 mm diameter pipe (pipe 1), branching into 881 m of 522 mm diameter pipe (pipe 2) and 765 m of 381 mm diameter pipe (pipe 3) in parallel, which join again to a single 1700 mm diameter line 733 m long (pipe 4). Assuming f= 0.0612 for all pipes, determine the flow rate in pipe 1.
Round your answer to 3 decimal places.
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