1. A fluid temperature of 70°F; fluid pressure of 1 atm 2. An inner pipe diameter of 0.34 inches Find: a) The maximum velcotiy (ft/s) for laminar flow in a pipe for gaseous ammonia having a molecular weight of 17 (hint: you'll need the ideal gas law) and a viscosity of 6.72E-6 lb/(ft-s) b) The minimum velocity (ft/s) for fully turbulent flow in a pipe for liquid hexane (a Newtonian fluid) which has a density of 35.54 lb/ft³ and a viscosity of 2.15E-4 lb/(ft-s).

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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1. A fluid temperature of 70°F; fluid pressure of 1 atm
2. An inner pipe diameter of 0.34 inches
Find:
a) The maximum velcotiy (ft/s) for laminar flow in a pipe for gaseous ammonia having a
molecular weight of 17 (hint: you'll need the ideal gas law) and a viscosity of 6.72E-6
lb/(ft-s)
b) The minimum velocity (ft/s) for fully turbulent flow in a pipe for liquid hexane (a
Newtonian fluid) which has a density of 35.54 lb/ft³ and a viscosity of 2.15E-4 lb/(ft-s).
Transcribed Image Text:1. A fluid temperature of 70°F; fluid pressure of 1 atm 2. An inner pipe diameter of 0.34 inches Find: a) The maximum velcotiy (ft/s) for laminar flow in a pipe for gaseous ammonia having a molecular weight of 17 (hint: you'll need the ideal gas law) and a viscosity of 6.72E-6 lb/(ft-s) b) The minimum velocity (ft/s) for fully turbulent flow in a pipe for liquid hexane (a Newtonian fluid) which has a density of 35.54 lb/ft³ and a viscosity of 2.15E-4 lb/(ft-s).
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