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HSHPTM program application in optimum of heat pipes thermal module

机译:HSHPTM程序在热管热模块优化中的应用

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摘要

Embedded U-type or L-type heat pipes into fins and based plate form a heat sink-heat pipes thermal module (HSHPTM), which transfers the total heat capacity from the heat source to the based plate and fins successfully, and then dissipates heat flow into the surrounding air. The main purpose of this study is to establish the theoretical model and thermal performance of the HSHPTM under different wind speeds, and calculate the heat flow of individual embedded heat pipes employed Newton's method and Gauss-Seidel iteration method. This paper employs a window program named HSHPTM V1.0 coded by Visual Basic commercial software to develop for optimum designing the heat sink-heat pipes thermal module. The computing core of HSHPTM program applies the theoretical thermal resistance analytical approach with iterative convergence stated in this article to obtain the numerical solutions. The results show that this calculating error comparison with experimental results is within ± 5%. This HSHPTM has the benefit of rapidly calculating the thermal performance of a heat sink-heat pipes thermal module.
机译:将U型或L型热管嵌入散热片和基础板中,形成散热器-热管热模块(HSHPTM),该模块将总热容量从热源成功传递到基础板和散热片,然后进行散热流入周围的空气。这项研究的主要目的是建立在不同风速下的HSHPTM的理论模型和热性能,并采用牛顿法和高斯-赛德尔迭代法计算单个嵌入式热管的热流。本文采用由Visual Basic商业软件编码的名为HSHPTM V1.0的窗口程序来开发,以优化设计散热器-热管热模块。 HSHPTM程序的计算核心采用了本文所述的理论热阻分析方法和迭代收敛性,从而获得了数值解。结果表明,该计算误差与实验结果的比较在±5%以内。该HSHPTM的优点是可以快速计算散热器-热管热模块的热性能。

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