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Textbook Solutions for Fundamentals of Heat and Mass Transfer

Chapter 11 Problem 11.91

Question

The heat sink of 7.29 is considered for an appli-cation in which the power dissipation is only 70 W, andthe engineer proposes to use air at T??20?C for cool-ing. Taking into account the increase in temperature ofthe air as it flows through the heat sink, plot the allow-able power dissipation and the air exit temperature as a function of the air velocity over the range1 m/s?u??5 m/s, with the constraint that the basetemperature not exceed Tb?70?C. Properties of theair may be approximated as k?0.027 W/m?K,??16.410?6m2/s, Pr?0.706, ??1.145 kg/m3,and cp?1007 J/kg?K. Hint: Assume the air does notescape through the upper surface of the heat sink, usea correlation for internal flow, and see 11.68.

Solution

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The first step in solving 11 problem number 91 trying to solve the problem we have to refer to the textbook question: The heat sink of 7.29 is considered for an appli-cation in which the power dissipation is only 70 W, andthe engineer proposes to use air at T??20?C for cool-ing. Taking into account the increase in temperature ofthe air as it flows through the heat sink, plot the allow-able power dissipation and the air exit temperature as a function of the air velocity over the range1 m/s?u??5 m/s, with the constraint that the basetemperature not exceed Tb?70?C. Properties of theair may be approximated as k?0.027 W/m?K,??16.410?6m2/s, Pr?0.706, ??1.145 kg/m3,and cp?1007 J/kg?K. Hint: Assume the air does notescape through the upper surface of the heat sink, usea correlation for internal flow, and see 11.68.
From the textbook chapter Heat Exchangers you will find a few key concepts needed to solve this.

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Title Fundamentals of Heat and Mass Transfer 7 
Author Theodore L. Bergman; Adrienne S. Lavine; Frank P. Incropera; David P. DeWitt
ISBN 9780470501979

The heat sink of .29 is considered for an appli-cation in

Chapter 11 textbook questions

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