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Textbook Solutions for Fundamentals of Heat and Mass Transfer

Chapter 1 Problem 1.76

Question

The wall of an oven used to cure plastic parts is ofthickness L?0.05 m and is exposed to large surround-ings and air at its outer surface. The air and the sur-roundings are at 300 K.(a) If the temperature of the outer surface is 400 K and its convection coefficient and emissivity are h?20 W/m2?K and ??0.8, respectively, what isthe temperature of the inner surface if the wall has athermal conductivity of k?0.7 W/m2?K?(b) Consider conditions for which the temperature of theinner surface is maintained at 600 K, while the airand large surroundings to which the outer surface isexposed are maintained at 300 K. Explore the effectsof variations in k, h, and ?on (i) the temperature ofthe outer surface, (ii) the heat flux through the wall,and (iii) the heat fluxes associated with convectionand radiation heat transfer from the outer surface.Specifically, compute and plot the foregoing depen-dent variables for parametric variations about base-line conditions of k?10 W/m?K, h?20 W/m2?K,and ??0.5. The suggested ranges of the indepen-dent variables are 0.1 ?k?400 W/m?K, 2 ?h?200 W/m2?K, and 0.05 ???1. Discuss the physi-cal implications of your results. Under what condi-tions will the temperature of the outer surface be lessthan 45C, which is a reasonable upper limit to avoidburn injuries if contact is made

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The first step in solving 1 problem number 76 trying to solve the problem we have to refer to the textbook question: The wall of an oven used to cure plastic parts is ofthickness L?0.05 m and is exposed to large surround-ings and air at its outer surface. The air and the sur-roundings are at 300 K.(a) If the temperature of the outer surface is 400 K and its convection coefficient and emissivity are h?20 W/m2?K and ??0.8, respectively, what isthe temperature of the inner surface if the wall has athermal conductivity of k?0.7 W/m2?K?(b) Consider conditions for which the temperature of theinner surface is maintained at 600 K, while the airand large surroundings to which the outer surface isexposed are maintained at 300 K. Explore the effectsof variations in k, h, and ?on (i) the temperature ofthe outer surface, (ii) the heat flux through the wall,and (iii) the heat fluxes associated with convectionand radiation heat transfer from the outer surface.Specifically, compute and plot the foregoing depen-dent variables for parametric variations about base-line conditions of k?10 W/m?K, h?20 W/m2?K,and ??0.5. The suggested ranges of the indepen-dent variables are 0.1 ?k?400 W/m?K, 2 ?h?200 W/m2?K, and 0.05 ???1. Discuss the physi-cal implications of your results. Under what condi-tions will the temperature of the outer surface be lessthan 45C, which is a reasonable upper limit to avoidburn injuries if contact is made
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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 wall of an oven used to cure plastic parts is

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