The roof of a car in a parking lot absorbs a solar radiant | StudySoup

Textbook Solutions for Fundamentals of Heat and Mass Transfer

Chapter 1 Problem 1.72

Question

The roof of a car in a parking lot absorbs a solar radiant flux of 800 W/m2, and the underside is perfectly insulated. The convection coefficient between the roof and the ambient air is 12 W/m2K.(a) Neglecting radiation exchange with the surroundings,calculate the temperature of the roof under steady-state conditions if the ambient air temperature is 20C. (b) For the same ambient air temperature, calculate the temperature of the roof if its surface emissivityis 0.8.(c) The convection coefficient depends on airflow condi-tions over the roof, increasing with increasing airspeed. Compute and plot the roof temperature as afunction of h for 2 h 200 W/m2K.

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The first step in solving 1 problem number 72 trying to solve the problem we have to refer to the textbook question: The roof of a car in a parking lot absorbs a solar radiant flux of 800 W/m2, and the underside is perfectly insulated. The convection coefficient between the roof and the ambient air is 12 W/m2K.(a) Neglecting radiation exchange with the surroundings,calculate the temperature of the roof under steady-state conditions if the ambient air temperature is 20C. (b) For the same ambient air temperature, calculate the temperature of the roof if its surface emissivityis 0.8.(c) The convection coefficient depends on airflow condi-tions over the roof, increasing with increasing airspeed. Compute and plot the roof temperature as afunction of h for 2 h 200 W/m2K.
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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 roof of a car in a parking lot absorbs a solar radiant

Chapter 1 textbook questions

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