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A novel hybrid heat sink using phase change materials for transient thermal management of electronics

机译:一种新型混合散热器,使用相变材料进行电子产品瞬态热管理

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A hybrid heat sink concept which combines passive and active cooling approaches is proposed. The hybrid heat sink is essentially a plate fin heat sink with the tip immersed in a phase change material (PCM). The exposed area of the fins dissipates heat during periods when high convective cooling is available. When the air cooling is reduced, the heat is absorbed by the PCM. The governing conservation equations are solved using a finite-volume method on orthogonal, rectangular grids. An enthalpy method is used for modeling the melting/resolidification phenomena. Results from the analysis elucidate the thermal performance of these hybrid heat sinks. The improved performance of the hybrid heat sink compared to a finned heat sink (without a PCM) under identical conditions, is quantified. In order to reduce the computational time and aid in preliminary design, a one-dimensional fin equation is formulated which accounts for the simultaneous convective heat transfer from the finned surface and melting of the phase change material at the tip. The influence of the location, amount, and type of PCM, as well as the fin thickness on the thermal performance of the hybrid heat sink is investigated. Simple guidelines are developed for preliminary design of these heat sinks.
机译:提出了一种混合散热器概念,其结合了被动和主动冷却方法。混合散热器基本上是板翅片散热器,尖端浸入相变材料(PCM)中。当可获得高对流冷却时,翅片的暴露区域在时段期间消散热量。当空气冷却减小时,热量被PCM吸收。在正交,矩形网格上使用有限体积法解决了管理保护方程。一种焓方法用于建模熔化/序贯化现象。分析结果阐明了这些混合散热器的热性能。定量了与相同条件下的翅片散热器(没有PCM)相比的混合散热器的改进性能。为了减少初步设计的计算时间和辅助,配制了一维翅片等式,其考虑了从翅片表面和尖端处的相变材料熔化的同时对流热传递。研究了PCM的位置,量和类型的影响,以及对混合散热​​器的热性能的翅片厚度进行了影响。简单的准则是为这些散热器的初步设计而开发的。

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