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首页> 外文期刊>Journal of electronics cooling and thermal control >Heat Transfer Enhancement via Combined Wall and Triangular Rooted-Fin System
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Heat Transfer Enhancement via Combined Wall and Triangular Rooted-Fin System

机译:通过组合壁和三角形根-翅片系统增强传热

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摘要

This work analyzes heat transfer through a wall containing triangular fins partially embedded in its volume. The coupled heat diffusion equations governing each constituent are solved numericallyusing an iterative finite volume method. A well bracketed effectiveness of the combined system that suits wide range of applications is analytically derived. Good agreement between the numerical and the analytical results is attained. It is found that the fin-root can act simultaneously as a heat sink and heat source for the wall. The heat transfer rate through the combined system is clearly seen to be maximized at a specific fin-root length. The maximum reported heat transfer rate through the triangular rooted-finned wall is found to be at most 90% above that for the rootless fin case at wall Biot number of 1.54. This percentage is noticed to decrease as the wall Biot number decreases. At that Biot number, the maximum heat transfer rate through the combined system reaches 150% above that through the plain wall. As a result of this work, it is recommended to utilize the triangular rooted-fin as a heat transfer enhancer for high mechanical strength structures exposed to highly convective fluid streams.
机译:这项工作分析了通过壁的热传递,该壁包含部分嵌入其体积的三角形鳍片。使用迭代有限体积法对控制每个成分的耦合热扩散方程进行数值求解。通过分析得出了适用于广泛应用的组合系统的有效括号。在数值和分析结果之间达成了良好的一致性。发现翅片根可以同时充当壁的散热器和热源。可以清楚地看到,通过组合系统的传热速率在特定的翅片根部长度处最大。发现通过三角形有根翅片壁的最大传热速率比无根翅片情况下的最高传热速率高90%,后者的壁Biot数为1.54。注意到该百分比随着壁比奥数的减少而降低。在该毕奥数下,通过组合系统的最大传热率比通过平壁的传热率高150%。这项工作的结果是,建议对暴露于高对流流体流中的高机械强度结构使用三角形有根翅片作为传热增强剂。

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