Loose Leaf For Introduction To Chemical Engineering Thermodynamics
Loose Leaf For Introduction To Chemical Engineering Thermodynamics
8th Edition
ISBN: 9781259878084
Author: Smith Termodinamica En Ingenieria Quimica, J.m.; Van Ness, Hendrick C; Abbott, Michael; Swihart, Mark
Publisher: McGraw-Hill Education
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Chapter 3, Problem 3.24P
Interpretation Introduction

Interpretation:

It is to determine heat loss from the tank of volume 0.1m3 contains air at 25oC and 101.33kPa to the compressed air line connected to tank, supplies air at constant conditions of 45oC and 1500kPa as a result of crack of valve in gas line so that air flows slowly from air line to the tank until both the pressure will be same keeping tank temperature constant at 25oC .

Concept Introduction:

To solve the problem, it is needed to find a relation which relates heat transfer of the tank to quantity of air supplies to it and its temperaturechange. Hence,

  n1=P1VtRT

And

  n2=P2VtRT

Where Vt is the total volume of the tank, n1 and n2 are the number of moles at different pressure and T is constant temperature.

So, the quantity of air supplies to tank is

  n'=n2n1=(P2P1)VtRT.....(1)

For non adiabatic, no shaft work steady state neglecting kinetic and potential terms, the resultant energy balance shall be

  Q=n'H'+d(nU)dt

Multiplying by dt and integrating with respect to time implies

  Q=n2U2n1U1n'H'Q=n2(U2H')n1(U1H')Q=n2(H2RTH')n1(H1RTH')Q=n2(CP(TT')RT)n1(CP(TT')RT)

Hence

  Q=n'(CP(TT')RT).....(2)

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Chapter 3 Solutions

Loose Leaf For Introduction To Chemical Engineering Thermodynamics

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