Three pipes are in parallel. The total volumetric flowrate through the network is 2.15 cumecs. If the Darcy- Weisbach Friction Factor is 0.015 for both Pipe 1 and Pipe 3, and 0.02 for Pipe 2, determine the volumetric flowrate in Pipe 3. Pipe 1: D₁ = 450mm, L₁ = 800m 1 Pipe 2: D₂ = 400mm, L₂ L2 = 700m Pipe 3: D3 = 500mm, L₁ = 600m O 1.01m^3/s O 0.69m^3/s O 0.94m^3/s O 0.86m^3/s
Three pipes are in parallel. The total volumetric flowrate through the network is 2.15 cumecs. If the Darcy- Weisbach Friction Factor is 0.015 for both Pipe 1 and Pipe 3, and 0.02 for Pipe 2, determine the volumetric flowrate in Pipe 3. Pipe 1: D₁ = 450mm, L₁ = 800m 1 Pipe 2: D₂ = 400mm, L₂ L2 = 700m Pipe 3: D3 = 500mm, L₁ = 600m O 1.01m^3/s O 0.69m^3/s O 0.94m^3/s O 0.86m^3/s
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![Three pipes are in parallel. The total volumetric flowrate through the network is 2.15 cumecs. If the Darcy-
Weisbach Friction Factor is 0.015 for both Pipe 1 and Pipe 3, and 0.02 for Pipe 2, determine the volumetric
flowrate in Pipe 3.
Pipe 1: D₁ = 450mm, L₁ = 800m
1
Pipe 2: D₂ = 400mm, L₂
L2
= 700m
Pipe 3: D3
=
500mm, L₁ = 600m
O 1.01m^3/s
O 0.69m^3/s
O 0.94m^3/s
O 0.86m^3/s](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F95df3f2c-64c8-4f96-95e5-cc049d88ee85%2F99d873c0-bfa3-4bab-a08a-3d5205cbafa0%2Fycnaxjp_processed.png&w=3840&q=75)
Transcribed Image Text:Three pipes are in parallel. The total volumetric flowrate through the network is 2.15 cumecs. If the Darcy-
Weisbach Friction Factor is 0.015 for both Pipe 1 and Pipe 3, and 0.02 for Pipe 2, determine the volumetric
flowrate in Pipe 3.
Pipe 1: D₁ = 450mm, L₁ = 800m
1
Pipe 2: D₂ = 400mm, L₂
L2
= 700m
Pipe 3: D3
=
500mm, L₁ = 600m
O 1.01m^3/s
O 0.69m^3/s
O 0.94m^3/s
O 0.86m^3/s
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