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Numerical analysis of PCM melting filling a rectangular cavity with horizontal partial fins

机译:PCM用水平局部翅片填充矩形腔的熔化过程的数值分析

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摘要

The present numerical study is conducted to analyze melting process within a rectangular enclosure filled by phase change material (PCM) vertically heated from one side. The right hot wall and the left cold wall are maintained at temperatures, T_(h)=38.3 °C and T_(c)=28.3 °C, respectively, and it was filled by solid PCM Gallium initially at temperature T_(c). The horizontal walls are insulated. A transient numerical model is developed to study the heat transfer and melting behaviours, and the natural convection is accounted. To enhance the heat transfer and the melting process of the PCM, fins with a rectangular and triangular shape are proposed. Moreover, the effects of both thermophysical properties and fins integration on the flow structure and heat transfer characteristics are investigated in detail. The melt fraction contours with the natural convection driven flow are performed and compared, as well as the temperature distributions for a Rayleigh number of around Ra= 10~(6). It is found that the rate of the melting increases with the elevation in the values of specific heat capacity C_(p) as well as the thermal conductivity λ of the PCM Gallium. The results show also that the rectangular fin accelerates the PCM melting faster than the triangular fin’s shape thanks to the increased exchange area.
机译:进行本数值研究以分析矩形外壳内的熔化过程,该矩形外壳由从一侧垂直加热的相变材料(PCM)填充。右热壁和左冷壁分别保持在T_(h)= 38.3°C和T_(c)= 28.3°C的温度下,最初在温度T_(c)下被固体PCM镓填充。水平墙是绝缘的。建立了一个瞬态数值模型来研究传热和熔化行为,并考虑了自然对流。为了增强PCM的热传递和熔化过程,提出了具有矩形和三角形形状的翅片。此外,详细研究了热物理性质和翅片集成对流动结构和传热特性的影响。进行并比较了自然对流驱动的熔体流动轮廓,以及瑞利数约为Ra = 10〜(6)的温度分布。发现熔化速率随比热容C_(p)的值以及PCM镓的热导率λ的增加而增加。结果还表明,由于增加了交换面积,矩形鳍片比三角形鳍片的形状加速PCM的熔化速度。

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