Gasoline (SG=0.68; μ =2.92x10-4 [kg/(m s)]) flows from one tank to another as shown in the figure. The pipe is 1 in, commercial 40 steel. Calculate the pressure in the container above the gasoline in the first tank that will result in a flow rate of Q = 100 gal/min. The second tank is open to the atmosphere. Consider the losses in accessories, the input and output have sharp edges.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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Gasoline (SG=0.68; μ =2.92x10-4 [kg/(m s)]) flows from one tank to another as shown in the figure. The pipe is 1 in, commercial 40 steel. Calculate the pressure in the container above the gasoline in the first tank that will result in a flow rate of Q = 100 gal/min. The second tank is open to the atmosphere. Consider the losses in accessories, the input and output have sharp edges.

 

 

P = ?
5 ft Gasoline
15 ft
Diámetro nominal
(in.)
1
50 ft
Cédula
40
Pipe
Diámetro interior
ft
cm
0.08742
2.664
10 ft-
Codos 90° regular
roscado
Vent
Q = 100 gal/min
Área de flujo
ft²
0.006002
T
5 ft
cm²
5.574
Transcribed Image Text:P = ? 5 ft Gasoline 15 ft Diámetro nominal (in.) 1 50 ft Cédula 40 Pipe Diámetro interior ft cm 0.08742 2.664 10 ft- Codos 90° regular roscado Vent Q = 100 gal/min Área de flujo ft² 0.006002 T 5 ft cm² 5.574
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