Q-4) Calculate the volume flow rate (Q) in (Liters/Sec) of saturated liquid ammonia (NH3) at (20.0) c which can be pumped through a (402.34) m long (6.0) inch i.d smooth pipe under an impressed pressure difference of (0.25) Psi ? Use the following equation ; Re.(f)* = (Dp/µ).[ (AP.D) / (2L.p)]% %3D You may assume that :- f = (0.079) / (Re )/4 Given for saturated Ammonia at (20.0) C' ; p = (611.75) Kg/m³ ; v =(0.359x10) m/Sec. %3D

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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Q-4) Calculate the volume flow rate (Q) in (Liters/Sec) of saturated liquid ammonia
(NH3) at (20.0) C which can be pumped through a (402.34) m long (6.0) inch i.d
smooth pipe under an impressed pressure difference of (0.25) Psi ? Use the following
equation;
Re.(f) = (Dp/u).[ (AP.D) / (2L.p)]^
%3D
You may assume that :-
f = (0.079) / (Re )/4
Given for saturated Ammonia at (20.0) C ;p = (611.75) Kg/m³ ; v =(0.359×10)
m/Sec.
%3D
Transcribed Image Text:Q-4) Calculate the volume flow rate (Q) in (Liters/Sec) of saturated liquid ammonia (NH3) at (20.0) C which can be pumped through a (402.34) m long (6.0) inch i.d smooth pipe under an impressed pressure difference of (0.25) Psi ? Use the following equation; Re.(f) = (Dp/u).[ (AP.D) / (2L.p)]^ %3D You may assume that :- f = (0.079) / (Re )/4 Given for saturated Ammonia at (20.0) C ;p = (611.75) Kg/m³ ; v =(0.359×10) m/Sec. %3D
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