The pipe flow in the figure is driven by pressurized air in the tank. Assuming f = 0.012 and the flow rate is 18.50 liters/sec. Find the gage pressure needed to provide a flow rate of 18.50 liters/sec. (Hint: Use BEE from surface to discharge point) 20m 2) 50mmø open jet 1 100m 10m P.

Structural Analysis
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Chapter2: Loads On Structures
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The pipe flow in the figure is driven by pressurized air in the tank. Assuming f = 0.012 and the
flow rate is 18.50 liters/sec. Find the gage pressure needed to provide a flow rate of 18.50
liters/sec. (Hint: Use BEE from surface to discharge point)
20m
50mmø
open jet
1)
100m
10m
40m
Transcribed Image Text:The pipe flow in the figure is driven by pressurized air in the tank. Assuming f = 0.012 and the flow rate is 18.50 liters/sec. Find the gage pressure needed to provide a flow rate of 18.50 liters/sec. (Hint: Use BEE from surface to discharge point) 20m 50mmø open jet 1) 100m 10m 40m
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