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OPTIMIZATION OF FILLING MASS FRACTION FOR COMPOSITE PCMS BASED THERMAL MANAGEMENT SYSTEM

机译:基于复合PCMS的热管理系统充填质量分数的优化

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Phase Change Materials (PCMs) have been widely investigated as a cooling solution due to their significant latent heat capacity. However, the current PCMs generally suffer a low thermal conductivity, thus hindering the application of PCMs. Composite Phase Change Materials (CPCMs) filling with high thermal conductivity materials have been proposed to solve this issue. Nevertheless, the latent heat of the CPCMs decreases with the mass fraction of fillings, thus leading to a lower allowable working time under safe operating temperature. Therefore, an optimal filling mass fraction of CPCMs is in urgent needed to improve the application of CPCMs. In this study, we developed a one-dimensional conduction heat transfer model of CPCMs to predict the optimal filling mass fraction of CPCMs to realize the maximum allowable working time. The filling mass fraction was introduced into the model and the relationship between the thermal conductivity and latent heat was built. We adopted paraffin as the matrix material and Expanded Graphite (EG) as the thermal conductivity enhancer. The allowable working time of the CPCMs as the function of filling mass fraction was obtained. Based on the principle of the maximum allowable working time, the optimal filling mass fraction was calculated. Comparative experiments were also conducted to validate the accuracy of the prediction model. The parameters which affect the maximum allowable working temperature were also investigated, including input heat flux, safe temperature, and height of CPCMs. The results show that a higher heat flux and height requires a larger filling mass fraction, and it's opposite for the safe temperature.
机译:相变材料(PCM)由于其巨大的潜热容量而已被广泛研究为一种冷却解决方案。但是,当前的PCM通常具有低的热导率,因此阻碍了PCM的应用。已经提出了填充有高导热率材料的复合相变材料(CPCM)来解决这个问题。然而,CPCM的潜热随着填料的质量分数而降低,从而导致在安全工作温度下的允许工作时间缩短。因此,迫切需要CPCM的最佳填充质量分数来改善CPCM的应用。在这项研究中,我们开发了CPCM的一维传导传热模型,以预测CPCM的最佳填充质量分数,以实现最大允许工作时间。将填充质量分数引入模型,并建立了热导率与潜热之间的关系。我们采用石蜡作为基质材料,采用膨胀石墨(EG)作为导热系数增强剂。获得了CPCM的允许工作时间与填充质量分数的函数关系。基于最大允许工作时间的原理,计算出最佳的填充质量分数。还进行了比较实验以验证预测模型的准确性。还研究了影响最大允许工作温度的参数,包括输入热通量,安全温度和CPCM的高度。结果表明,较高的热通量和高度需要较大的填充质量分数,而对于安全温度则相反。

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