Effect of Fin Orientation on PCM Melting in a Spherical Enclosure for Latent Heat Storage

A.K. Sharma, R. Kothari, Anuj Kumar, S. Sahu
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引用次数: 1

Abstract

The present work is focused on numerical investigation of melting of Phase change material (PCM) filled in a spherical capsule integrated with a metallic fin. n-octadecane having melting temperature of 28° C is selected as PCM and aluminum is considered as fin material. The effect of fin orientation on PCM melting in a spherical enclosure is analyzed considering constrained melting conditions. The orientation angle of the fin is varied from 0–30° in both clockwise and anticlockwise directions. The computational model is considered as two dimensional axisymmetric with laminar flow condition. To ascertain the validity of our numerical methodology present computational model is validated with the test results available in the literature and are found to be in good agreement. The numerical result reveals that employing fin at the center of the capsule (θ = 0°) decreases the melting time and increases the heat transfer performance of the system.
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翅片取向对潜热储层球形外壳中PCM熔化的影响
本文以28℃熔融温度的正十八烷作为相变材料,铝作为相变材料作为翅片材料,对相变材料填充在金属翅片集成的球形胶囊内的熔化过程进行了数值研究。考虑有约束的熔化条件,分析了翅片取向对PCM在球形壳体内熔化的影响。鳍的定向角在顺时针和逆时针方向上从0-30°变化。计算模型考虑为二维轴对称的层流条件。为了确定我们的数值方法的有效性,目前的计算模型与文献中可用的测试结果进行了验证,并发现它们非常一致。数值计算结果表明,在胶囊中心(θ = 0°)处设置翅片可以缩短系统的熔化时间,提高系统的传热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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