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Simulation and experimental investigation of thermal performance of a miniature flat plate heat pipe

机译:微型平板热管热性能的仿真与实验研究

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摘要

This paper presents the results of a CFD analysis and experimental tests of two identical miniature flat plate heat pipes (FPHP) using sintered and screenmesh wicks and a comparative analysis and measurement of two solid copper base plates 1mmand 3mmthick.udIt was shown that the design of the miniature FPHP with sintered wick would achieve the specific temperature gradients threshold for heat dissipation rates of up to 80W.The experimental results also revealed that for localised heat sources of up to 40W, a solid copper base plate 3mm thick would have comparable heat transfer performances to that of the sintered wick FPHP. In addition, a marginal effect on the thermal performance of the sintered wick FPHP was recorded when its orientation was held at 0∘, 90∘, and 180∘ and for heat dissipation rates ranging from 0 to 100W.
机译:本文介绍了使用烧结和筛网灯芯的两个相同的微型平板热管(FPHP)的CFD分析结果和实验测试,以及两个厚度为1mm和3mm的实心铜基板的对比分析和测量结果。 ud表明设计已完成烧结灯芯的微型FPHP的热膨胀率达到80W时将达到特定的温度梯度阈值。实验结果还显示,对于高达40W的局部热源,厚3mm的固态铜基板将具有可比的热传递性能与烧结灯芯FPHP的性能相同。此外,当其方向保持在0∘,90∘和180∘且散热率在0至100W范围内时,记录到烧结灯芯FPHP的热性能的边际效应。

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    Boukhanouf Rabah; Haddad A.;

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  • 年度 2013
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