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An experimental and numerical investigation of constrained melting heat transfer of a phase change material in a circumferentially finned spherical capsule for thermal energy storage

机译:实验和数值研究约束相变材料在周向翅片球形囊中用于储热的传热

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Constrained melting heat transfer of a phase change material (PCM) in a circumferentially finned spherical capsule was studied with application to latent heat thermal energy storage (TES). Attention was paid primarily to revealing the influence of fin height on melting heat transfer and TES performance of the PCM system. Visualized experiments were performed to observe the liquid-solid interface evolutions during melting, and to validate the numerical simulations that were conducted based on the enthalpy method. By means of measuring the instantaneous volume expansion upon melting, an indirect experimental method was proposed and implemented to acquire quantitatively the variations of melt fraction and heat transfer rate. Good consistency was observed between the experimental and numerical results. A combination of the two was able to offer an in-depth understanding on the fin effects by providing detailed knowledge on the interface evolutions and natural convective flow and heat transfer as well. It was shown that the TES performance is enhanced with increasing the fin height, and that the melting duration time is shortened up to nearly 30% at the highest fin height studied. The enhancement was attributed to the combined positive effects due to the presence of the fin, which are enhanced heat conduction by the extended heat transfer area and local natural convection induced in the vicinity of the fin. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了相变材料(PCM)在周向翅片状球形胶囊中的约束熔化传​​热,并将其应用于潜热热能存储(TES)中。主要注意揭示翅片高度对PCM系统的熔融传热和TES性能的影响。进行了可视化实验以观察熔融过程中液-固界面的演变,并验证了基于焓法进行的数值模拟。通过测量熔化时的瞬时体积膨胀,提出并实施了一种间接实验方法,以定量获取熔化分数和传热速率的变化。实验和数值结果之间观察到良好的一致性。通过提供关于界面演变以及自然对流和传热的详细知识,两者的结合能够对散热片效果提供深入的了解。结果表明,随着翅片高度的增加,TES性能得到提高,并且在所研究的最高翅片高度下,熔化持续时间缩短了近30%。这种增强归因于鳍片的存在所产生的综合正效应,这是由于扩展的传热面积和鳍片附近引起的局部自然对流而增强了热传导。 (C)2016 Elsevier Ltd.保留所有权利。

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