A plate (k10 W/mK) is stiffened by a series of | StudySoup

Textbook Solutions for Fundamentals of Heat and Mass Transfer

Chapter 4 Problem 4.82

Question

A plate (k?10 W/m?K) is stiffened by a series of lon-gitudinal ribs having a rectangular cross section withlength L?8 mm and width w?4 mm. The base of theplate is maintained at a uniform temperature Tb?45C, while the rib surfaces are exposed to air at a tem-perature of T??25C and a convection coefficient of h?600 W/m2?K.(a) Using a finite-difference method with x??y?2 mm and a total of 5 ?3 nodal points and regions,estimate the temperature distribution and the heatrate from the base. Compare these results with thoseobtained by assuming that heat transfer in the rib isone-dimensional, thereby approximating the behav-ior of a fin.(b) The grid spacing used in the foregoing finite-difference solution is coarse, resulting in poor pre-cision for estimates of temperatures and the heatrate. Investigate the effect of grid refinement byreducing the nodal spacing to x??y?1 mm (a9?3 grid) considering symmetry of the center line.(c) Investigate the nature of two-dimensional conduc-tion in the rib and determine a criterion for which theone-dimensional approximation is reasonable. Do soby extending your finite-difference analysis to deter-mine the heat rate from the base as a function of thelength of the rib for the range 1.5 L/w10, keep-ing the length Lconstant. Compare your results withthose determined by approximating the rib as a fin.

Solution

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The first step in solving 4 problem number 82 trying to solve the problem we have to refer to the textbook question: A plate (k?10 W/m?K) is stiffened by a series of lon-gitudinal ribs having a rectangular cross section withlength L?8 mm and width w?4 mm. The base of theplate is maintained at a uniform temperature Tb?45C, while the rib surfaces are exposed to air at a tem-perature of T??25C and a convection coefficient of h?600 W/m2?K.(a) Using a finite-difference method with x??y?2 mm and a total of 5 ?3 nodal points and regions,estimate the temperature distribution and the heatrate from the base. Compare these results with thoseobtained by assuming that heat transfer in the rib isone-dimensional, thereby approximating the behav-ior of a fin.(b) The grid spacing used in the foregoing finite-difference solution is coarse, resulting in poor pre-cision for estimates of temperatures and the heatrate. Investigate the effect of grid refinement byreducing the nodal spacing to x??y?1 mm (a9?3 grid) considering symmetry of the center line.(c) Investigate the nature of two-dimensional conduc-tion in the rib and determine a criterion for which theone-dimensional approximation is reasonable. Do soby extending your finite-difference analysis to deter-mine the heat rate from the base as a function of thelength of the rib for the range 1.5 L/w10, keep-ing the length Lconstant. Compare your results withthose determined by approximating the rib as a fin.
From the textbook chapter Two-Dimensional, Steady-State Conduction you will find a few key concepts needed to solve this.

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full solution

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

A plate (k10 W/mK) is stiffened by a series of

Chapter 4 textbook questions

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