P1 P2 13 L1 12 L4 15 P3 A liquid flows through a pipe as shown above at a rate of 156.25 gpm. The entire piping system is 2.5inch inside diameter pipe Given: •The density of water is 62.4 lbm/ft3 •The specific gravity of the fluid is 0.9 •The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006 • Pressure gauge readings are in psig and P1 = 125 psig •The piping system dimensions are as follows: L1=26ft; L2=25ft; L3-70ft; L4-10ft; L5-12ft: Given: • The density of water is 62.4 lbm/ft3 • The specific gravity of the fluid is 0.9 •The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006 • Pressure gauge readings are in psig and P1 = 125 psig • The piping system dimensions are as follows: L1=26ft; L2=25ft; L3=70ft ; L4=10ft ; L5=12ft ; For the following questions, only consider the friction loss due to the piping What is the volumetric flow, ft3/s, through the pipe? What is the velocity, ft/s? What is the reynold's number, Nre? What is the fanning friction factor, f? What is the pressure at P3, psig?

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
Section: Chapter Questions
Problem 1.1P
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The pressure at P3 should be in the 100’s!
P1
P2
13
L1
12
L4
15
P3
A liquid flows through a pipe as shown above at a rate of 156.25 gpm. The entire piping system is 2.5inch
inside diameter pipe
Given:
•The density of water is 62.4 lbm/ft3
•The specific gravity of the fluid is 0.9
•The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006
• Pressure gauge readings are in psig and P1 = 125 psig
•The piping system dimensions are as follows: L1=26ft; L2=25ft; L3-70ft; L4-10ft; L5-12ft:
Transcribed Image Text:P1 P2 13 L1 12 L4 15 P3 A liquid flows through a pipe as shown above at a rate of 156.25 gpm. The entire piping system is 2.5inch inside diameter pipe Given: •The density of water is 62.4 lbm/ft3 •The specific gravity of the fluid is 0.9 •The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006 • Pressure gauge readings are in psig and P1 = 125 psig •The piping system dimensions are as follows: L1=26ft; L2=25ft; L3-70ft; L4-10ft; L5-12ft:
Given:
• The density of water is 62.4 lbm/ft3
• The specific gravity of the fluid is 0.9
•The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006
• Pressure gauge readings are in psig and P1 = 125 psig
•
The piping system dimensions are as follows: L1=26ft; L2=25ft; L3=70ft ; L4=10ft ; L5=12ft ;
For the following questions, only consider the friction loss due to the piping
What is the volumetric flow, ft3/s, through the pipe?
What is the velocity, ft/s?
What is the reynold's number, Nre?
What is the fanning friction factor, f?
What is the pressure at P3, psig?
Transcribed Image Text:Given: • The density of water is 62.4 lbm/ft3 • The specific gravity of the fluid is 0.9 •The viscosity of the fluid is 10 CP; The relative roughness of the piping is 0.0006 • Pressure gauge readings are in psig and P1 = 125 psig • The piping system dimensions are as follows: L1=26ft; L2=25ft; L3=70ft ; L4=10ft ; L5=12ft ; For the following questions, only consider the friction loss due to the piping What is the volumetric flow, ft3/s, through the pipe? What is the velocity, ft/s? What is the reynold's number, Nre? What is the fanning friction factor, f? What is the pressure at P3, psig?
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