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Method to improve geometry for heat transfer enhancement in PCM composite heat sinks

机译:改善PCM复合散热器中传热的几何方法

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Use of composite heat sinks (CHS), constructed using a vertical array of 'fins' (or elemental composite heat sink, ECHS), made of large latent heat capacity phase change materials (PCM) and highly conductive base material (BM) is a much sought cooling method for portable electronic devices, which are to be kept below a set point temperature (SPT). This paper presents a thermal design procedure for proper sizing of such CHS, for maximizing the energy storage and the time of operation until all of the latent heat storage is exhausted. For a given range of heat flux, q″, and height, A, of the CHS, using a scaling analysis of the governing two dimensional unsteady energy equations, a relation between the critical dimension for the ECHS and the amount of PCM used (φ) is determined. For a φ, when the dimensions of the ECHS are less than this critical dimension, all of the PCM completely melts when the CHS reaches the SPT. The results are further validated using appropriate numerical method solutions. A proposed correlation for chosen material properties yields predictions of the critical dimensions within 10% average deviation. However, the thermal design procedure detailed in this paper is valid, in general, for similar finned-CHS configurations, composed of any high latent heat storage PCM and high conductive BM combination.
机译:使用由垂直散热片(或元素复合散热片,ECHS)构成的复合散热片(CHS),这种散热片由大潜热容量相变材料(PCM)和高导电性基础材料(BM)制成。便携式电子设备急需的冷却方法,应将其保持在设定温度(SPT)以下。本文提出了一种热设计程序,用于合理确定此类CHS的尺寸,以最大化能量存储和运行时间,直到耗尽所有潜热存储。对于给定范围的CHS热通量q''和高度A,使用控制的二维非稳态能量方程的比例分析,ECHS的临界尺寸与所用PCM量(φ ) 决心,决意,决定。对于φ,当ECHS的尺寸小于此临界尺寸时,当CHS到达SPT时,所有PCM都会完全熔化。使用适当的数值方法解决方案进一步验证了结果。所选材料属性的拟议相关性可得出关键尺寸的预测值,平均偏差在10%以内。但是,本文详细介绍的热设计程序通常适用于由任何高潜热储能PCM和高导电性BM组成的类似翅片式CHS配置。

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