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Melting of phase change material from an isothermal vertical wall in a semi-enclosure

机译:半封闭的等温垂直壁相变材料的熔化

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Due to the low thermal conductivity of phase change materials (PCMs), increasing efforts are dedicated to exploring methods of enhancing the thermal performance of PCM melting processes, among which is the appropriate geometric design of PCM enclosure to passively augment natural convection. This numerical study first confirmed and explained the fact that for PCM melting from an isothermal vertical wall, the vertical adiabatic wall opposite of the heating wall has a detrimental effect on the thermal performance. Alternatively, the optimal shape of the opposing wall is the one which strictly matches that of the free-forming melting front. The effect of the other constraints of the enclosure which are the top and bottom walls was then studied. We found that by tilting the top wall outwards generally accelerates heat transfer and latent heat storage due to beneficial alterations to natural convection within the molten PCM; whereas tilting the bottom wall has negligible effect. This study covers the parameter ranges of Prandtl number Pr = 40, Stefan number Ste = 0.33 and Rayleigh numbers Ra = 0 (pure conduction), 10(5) and 10(7). The shapes of the melting fronts computed here for the configurations of tilted top wall provide a useful reference and groundwork for the future geometric optimization of PCM enclosure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于相变材料(PCM)的导热系数低,因此人们致力于开发增强PCM熔化过程热性能的方法,其中包括适当地设计PCM外壳以被动地增强自然对流的几何设计。该数值研究首先证实并解释了以下事实:对于从等温垂直壁熔化的PCM,与加热壁相对的垂直绝热壁会对热性能产生不利影响。或者,相对壁的最佳形状是严格匹配自由形成的熔化前沿的形状。然后研究了外壳的其他约束条件,即顶壁和底壁。我们发现,由于熔融PCM内部自然对流的有益变化,向外倾斜顶壁通常会加快传热和潜热存储。倾斜底壁的影响可忽略不计。这项研究涵盖了Prandtl数Pr = 40,Stefan数Ste = 0.33和Rayleigh数Ra = 0(纯传导),10(5)和10(7)的参数范围。此处针对倾斜的顶壁的配置计算出的熔化前沿的形状为PCM外壳的未来几何优化提供了有用的参考和基础。 (C)2018 Elsevier Ltd.保留所有权利。

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