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Evaluation of heat sink performance using PCM and vapor chamber/ heat pipe

机译:使用PCM和蒸汽室/热管评估散热器性能

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This paper presents a numerical study on heat sink thermal performance using phase change materials (PCM) and a vapor chamber for heat source cooling. Heat sink performance in both natural and forced convection heat transfer modes is investigated. The influence of various geometrical parameters such as number, height and thickness of fins for three different modes of conventional heat sink, PCM-based heat sink and heat sink integrated with vapor chamber is studied. Numerical results showed that the number of fins and fin height were more effective than the fin thickness in reducing heat source temperature. Furthermore, in natural convection, the addition of PCM and vapor chamber to the heat sink reduces the heat source temperature by a maximum of 33.1% and 9.5%, respectively, compared to a conventional heat sink. But in forced convection, the use of vapor chamber reduces the heat source temperature by 7.9% while the addition of PCM to the heat sink affects its performance adversely. In fact when fresh air is blown to the heat sink, it provides a higher temperature potential at all the surfaces. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用相变材料(PCM)和用于热源冷却的蒸汽室散热散热性能的数值研究。研究了天然和强制对流传热模式的散热水槽性能。研究了各种几何参数的影响,例如翅片的三种不同模式,基于PCM的散热器和与蒸汽室集成的散热器的三种不同模式的数量,高度和厚度。数值结果表明,翅片和翅片高度的数量比减少热源温度的翅片厚度更有效。此外,与传统的散热器相比,在自然对流中,向散热器的PCM和蒸汽室的添加将热源温度降低了最多33.1%和9.5%。但在强制对流中,使用蒸汽室的使用将热源温度降低了7.9%,同时将PCM添加到散热器的增加影响其性能不利。实际上,当新鲜空气被吹到散热器时,它在所有表面上提供更高的温度电位。 (c)2020 elestvier有限公司保留所有权利。

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