Fundamentals of Heat and Mass Transfer
Fundamentals of Heat and Mass Transfer
7th Edition
ISBN: 9780470501979
Author: Frank P. Incropera, David P. DeWitt, Theodore L. Bergman, Adrienne S. Lavine
Publisher: Wiley, John & Sons, Incorporated
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Chapter 7, Problem 7.20P

The roof of a refrigerated truck compartment is of composite construction, consisting of a layer of foamed urethane insulation ( t 2 = 50 mm, k i = 0.026 W/m K ) sandwiched between aluminum alloy panels ( t 1 = 5 mm, k p = 180 W/m K ) . The length and width of the roof are L = 10 m and W = 3.5 m, respectively, and the temperature of the inner surface is T s , i = 10 ° C . Consider conditions for which the truck is moving at a speed of V = 105 km/h, the air temperature is T = 32 ° C, and the solar irradiation is G S = 750 W/m 2 . Turbulent flow may be assumed over the entire length of the roof.
Chapter 7, Problem 7.20P, The roof of a refrigerated truck compartment is of composite construction, consisting of a layer of

  1. For equivalent values of the solar absorptivity and the emissivity of the outer surface ( α s = ε = 0.5 ) , estimate the average temperature T s , o of the outer surface. What is the corresponding heat load impused on the refrigeration system?
  2. A special finish ( α s = 0.15 , ε = 0.8 ) may be applied to the outer surface. What effect would such an application have on the surface temperature and the heat load?
  3. If, with α s = ε = 0.5 , the roof is not insulated ( t 2 = 0 ) , what are the corresponding values of the surface temperature and the heat load?

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Chapter 7 Solutions

Fundamentals of Heat and Mass Transfer

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