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Effects of fins arrangement and parameters on the consecutive melting and solidification of PCM in a latent heat storage unit

机译:翅片布置和参数对潜热储存单元连续熔化和PCM凝固的影响

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摘要

This study is to investigate the characteristics of consecutive melting and solidification of a phase change material (PCM) in a horizontal double tube LHS unit. Fins is used to improve the heat transfer rate on the PCM due to its low thermal conductivity. A two-dimensional symmetric simulation model with considering natural convection is established. Enthalpy-porosity technique is used for modeling the phase change process. The effects of fins arrangements, number (N) and length (L) on the heat storage performance were studied. In addition, the effect of outer shell material of the finned LHS unit was studied. Moreover, the interactions among N, L, outer shell material and fins arrangement are considered. Results show that the fins of straight design shows a higher heat transfer enhancement than other arrangements, especially for the cases with small fins number (N 6) and low thermal conductivity of outer tube material. It was also found that less long fins are more efficient in increasing the phase change rate than more short fins with the same total fins length.
机译:该研究是研究水平双管LHS单元中连续熔化和凝固的特性和凝固。由于其低导热率,翅片用于提高PCM上的传热速率。建立了考虑自然对流的二维对称模拟模型。焓 - 孔隙度技术用于建模相变过程。研究了翅片布置,数量(N)和长度(L)对热储存性能的影响。此外,研究了翅片LHS单元的外壳材料的效果。此外,考虑了N,L,外壳材料和散热装置之间的相互作用。结果表明,直线设计的翅片显示出比其他布置更高的传热增强,特别是对于具有小鳍数(N <6)和外管材料的低导热率的情况。还发现,在增加相变率比具有相同总翅片长度的短翅片的相变率较少的长鳍片更有效。

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