Combined Effects of Eccentricity and Internal Fins on the Shell and Tube Latent Heat Storage Systems

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引用次数: 5

Abstract

A numerical simulation study was performed on shell and tube configuration for latent heat storage applications where a Phase Change Material “PCM” - N-eicosane -was used to fill the shell side. The effects of smooth tube eccentricity from the shell center were investigated first, two values of eccentricity (ε=0.267, ε=0.533) were compared to the concentric case (ε=0). It was found out that increasing the eccentricity reduces the melting time by 5% and 10% for ε=0.267 and 0.533 respectively. Then the combined effects of eccentricity and attaching fins to the tube within the shell side were investigated for two fin types: straight rectangular fins and flipped triangular fins. The fin addition to the concentric tube reduced the melting time by about 36%, whereas combining the fins - of either type - to the tube of eccentricities of 0.267 and 0.533 reduced the melting by almost 41 % and 48% respectively, when compared to the smooth concentric tube case
偏心和内翅片对壳管潜热蓄热系统的综合影响
采用相变材料“PCM”(n -廿烷)填充壳侧,对潜热储层的管壳结构进行了数值模拟研究。首先研究了光滑管偏心距壳中心的影响,比较了两个偏心距值(ε=0.267, ε=0.533)与同心管偏心距值(ε=0)的差异。结果表明,当ε=0.267和0.533时,增大偏心距可使熔炼时间分别缩短5%和10%。在此基础上,研究了直矩形翅片和翻转三角翅片两种翅片类型的壳侧偏心率和附鳍对壳侧管的综合影响。与光滑的同心管相比,在同心管上加翅片可减少约36%的熔化时间,而在偏心率为0.267和0.533的同心管上加翅片可分别减少近41%和48%的熔化时间
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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