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首页> 外文期刊>Journal of Energy Storage >Phase change material heat transfer enhancement in latent heat thermal energy storage unit with single fin: Comprehensive effect of position and length
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Phase change material heat transfer enhancement in latent heat thermal energy storage unit with single fin: Comprehensive effect of position and length

机译:单翅片潜热热储能单元中相变材料传热增强:位置和长度的综合效果

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摘要

In this study, the comprehensive effect of position and length of the fin in a latent heat thermal energy storage (LHTES) unit with a single fin on the melting and solidification of the phase-change materials (PCMs) was explored by transient numerical simulations. By analyzing the liquid-solid interfaces, temperature distributions, velocity vector and phase change rate, the melting and solidification characteristics of PCM and heat transfer enhancement mechanism of the fin with various length ratios and height ratios were understood in detail. The results illustrated that the total melting time was significantly reduced by increasing the fin length and lowing the fin position simultaneously. On the other hand, lowering the fin position would result in non-uniform temperature distribution during the solidification process. More importantly, considering the contradiction in fin position between melting and solidification, an optimal position of the fin corresponding to different fin lengths was suggested. Besides, a disparity between heat storage/release and phase transition was quantitatively discussed.
机译:在该研究中,通过瞬态数值模拟探索了潜热热能存储(LHTES)单元在潜热热能存储(LHTES)单元中的位置和长度与单翅片的熔化和凝固的综合效果,并通过瞬态数值模拟探索了相变材料(PCMS)。通过分析液体固体界面,温度分布,速度载体和相变率,详细理解具有各种长度比和高度比的鳍片的PCM和传热增强机理的熔融和凝固特性。结果表明,通过同时增加翅片长度并使翅片位置降低,总熔化时间显着降低。另一方面,降低翅片位置将导致凝固过程中的不均匀温度分布。更重要的是,考虑到熔化和凝固之间的翅片位置的矛盾,提出了对应于不同鳍长的翅片的最佳位置。此外,定量讨论了储热/释放和相变之间的视差。

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