Liquid isobutane at T=160 °F and pressure P=500 psia with a flow rate of m = 1000 lbmol/hr is sent to storage using a centrifugal pump. The efficiency of the pump is 75%, and the discharge pressure is P=1000 psia. Calculate the power requirement in hp, and the temperature rise across the pump in °F

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
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Liquid isobutane at T = 160 °F and pressure P = 500 psia with a flow rate of
m = 1000 lbmol/hr is sent to storage using a centrifugal pump. The efficiency of the pump is
75%, and the discharge pressure is P=1000 psia. Calculate the power requirement in hp, and
the temperature rise across the pump in °F
Transcribed Image Text:Liquid isobutane at T = 160 °F and pressure P = 500 psia with a flow rate of m = 1000 lbmol/hr is sent to storage using a centrifugal pump. The efficiency of the pump is 75%, and the discharge pressure is P=1000 psia. Calculate the power requirement in hp, and the temperature rise across the pump in °F
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