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 12, Problem 12.120P

A thin sheet of glass is used on the roof of a green- house and is irradiated as shown

Chapter 12, Problem 12.120P, A thin sheet of glass is used on the roof of a green- house and is irradiated as shown The

The irradiation comprises the total solar flux G s , the flux G a t m   due to atmospheric emission (sky radiation), and the flux Gi due to emission from interior surfaces. The fluxes G a t m  and  G i are concentrated in the far IR region λ 8 μ m .The glass may also exchange energy by convection with the outside and inside atmospheres. The glass may be assumed to be totally transparentfor λ < 1   μ m ( τ λ = 1.0  for  λ < 1   μ m ) and opaque,with α λ = 1.0  for  λ 1   μ m .

(a) Assuming steady-state conditions, with all radiative fluxes uniformly distributed over the sur- faces and the glass characterized by a uniform temperature T g , write an appropriate energy balance for a unit area of the glass.

(b) For T g = 27 C ,  h o = 10  W/m 2 K ,  G s = 1100 W/m 2 ,  T , o = 24 C , h o = 55  W/m 2 K ,  G a t m = 250 W/m 2 ,  and G i = 440 W/m 2 , calculate the temperature of the greenhouse ambient air, T , i .

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Chapter 12 Solutions

Fundamentals of Heat and Mass Transfer

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