平行翅片间相互辐射扩展表面传热的数值研究

R. Sobral, J. Quirino, E. D. Correa, R. Gama
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引用次数: 1

摘要

本文的工作显示了相互换热对翅片表面效能的影响。数值模拟是通过一系列线性问题进行的,这些问题具有等效最小值原理,其极限是原问题的解。原始的非线性问题被视为一系列线性问题的极限(它总是存在的),如经典的传导-对流问题。本文采用有限差分线性格式对非线性传导-辐射传热过程进行了研究和模拟。由于数学复杂性不是模拟椭圆型偏微分方程的约束条件,因此,通过标准程序可以很容易地达到这样的极限,允许采用更现实的假设,如一些非线性边界条件。这一工作解释了刚性翅片中对流热交换和辐射热交换的稳态传热过程。为了说明该方法,给出了一些典型的结果。结果表明,辐射的相关性和翅片之间的热相互作用的重要性,从而有一个有效的和真实的热映射。忽略热相互作用可导致高达20%的误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NUMERICAL STUDY OF HEAT TRANSFER IN EXTENDED SURFACESWITH MUTUAL RADIATION BETWEEN PARALLEL FINS
The present work shows the influence of the mutual heat transfer on the effectiveness of finned surfaces. Numerical simulations are carried out through a sequence of linear problems, possessing an equivalent minimum principle, that has as its limit the solution of the original problem. The original nonlinear problem is regarded as the limit (which always exists) of a sequence of linear problems like the classical conduction-convection ones. In this work the nonlinear conduction-radiation heat transfer process is considered and simulated by means of a finite difference linear scheme. Such a limit is reached in an easy way by means of standard procedures, allowing the employment of more realistic hypotheses, like some nonlinear boundary conditions, since the mathematical complexities are not a constraint for simulating the elliptic partial differential equation. This work accounts for the the steady state heat transfer process in rigid fins which experiences convective and radiative heat exchange. Some typical results are shown in order to illustrate the methodology. Results have shown both the relevance of the radiation and the importance of the thermal interaction between the fins, so that there is an effective and realistic thermal mapping. Neglecting the thermal interaction can lead to errors of up to 20 percent.
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