Gasoline flows from one tank to the other as shown in the figure. The pipe is 25 mm with friction factor of 0.022. The second tank is Given h1=1.4m h2 = 4.5 m h3 = 1.0 m x1 = 14.9 m x2 = 2.7 m h₂ P = ? Gasoline X₁ Pipe x2 Calculate the pressure (kPa) above the gasoline in the first tank that will result in a flowrate of 400 Liters/min. Express your answer in whole number. Vent V

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The pipe is 25mm with friction factor of 0.022. The second tank is vented. H1=1.4m H2=4.5m H3=1.0m X1=14.9m X2=2.7m Calculate the pressure(kPa) above the gasoline in the first tank that will result in a flowrate of 400 liters/min.
Gasoline flows from one tank to the other as shown in the figure. The pipe is 25 mm with friction factor of 0.022. The second tank is
Given
h1 = 1.4m
h2 = 4.5 m
h3 = 1.0 m
x1 = 14.9 m
x2 = 2.7 m
h₂
P = ?
Gasoline
X₁
Pipe
X2
Calculate the pressure (kPa) above the gasoline in the first tank that will result in a flowrate of 400 Liters/min.
Express your answer in whole number.
Vent
V
Transcribed Image Text:Gasoline flows from one tank to the other as shown in the figure. The pipe is 25 mm with friction factor of 0.022. The second tank is Given h1 = 1.4m h2 = 4.5 m h3 = 1.0 m x1 = 14.9 m x2 = 2.7 m h₂ P = ? Gasoline X₁ Pipe X2 Calculate the pressure (kPa) above the gasoline in the first tank that will result in a flowrate of 400 Liters/min. Express your answer in whole number. Vent V
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