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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental and numerical studies on performance of PCM-based heat sink with different configurations of internal fins
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Experimental and numerical studies on performance of PCM-based heat sink with different configurations of internal fins

机译:不同内部翅片配置的PCM基散热器性能的实验和数值研究

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摘要

This paper presents both experimental and numerical investigations on the application of a PCM-based heat sink for the purpose of thermal management. A comparison was carried out between heat sink with and without phase change material (PCM). The effects of various parameters such as power levels, number of fins, fin height and fin thickness were studied. The results showed that increasing the number of fins and fin height resulted in an appreciable increase in overall thermal performance. Increasing the fin thickness only gave a slight improvement. There was an optimum fin thickness, above which the heat sink performance showed no further improvement. Increasing the power level input, as expected, increased the melting rate of the PCM. In all cases, heat conduction was the primary mode of heat transfer at the initial stage of melting. At the later stage, free convection played a more crucial role in enhancing the melting of the PCM.
机译:本文介绍了基于PCM的散热器用于热管理的实验和数值研究。在有和没有相变材料(PCM)的散热器之间进行了比较。研究了功率水平,鳍片数量,鳍片高度和鳍片厚度等各种参数的影响。结果表明,增加散热片的数量和高度会导致整体热性能的显着提高。增加翅片厚度仅给出了轻微的改善。有一个最佳的散热片厚度,超过该厚度散热片性能没有进一步改善。如预期的那样,增加功率电平输入会增加PCM的熔化速率。在所有情况下,热传导都是熔化初期的主要传热方式。在稍后阶段,自由对流在增强PCM的熔化方面起着更为关键的作用。

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