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首页> 外文期刊>International Journal of Thermal Sciences >Constructal entropy generation rate minimization for cylindrical pin-fin heat sinks
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Constructal entropy generation rate minimization for cylindrical pin-fin heat sinks

机译:圆柱销翅片散热器的构造熵产生率最小化

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Optimization of in-line cylindrical pin-fin heat sinks (PFHS) is carried out by using constructal theory and entropy generation minimization (EGM) theory for fixed total heat sink volume and fin-material volume. The optimal constructs of cylindrical pin-fin are obtained by taking the minimum entropy generation rate (MEGR) as objective, and the influences of fin-material fraction, heat transfer load (HTL) of the heat sink and the fluid velocity on the optimization results are studied. It is shown that there exists optimal diameters makes the EGR minimized for the fixed shape of the heat sink; the MEGR decreases, the corresponding optimal diameter and number of cylindrical pin-fin increase as the fin-material fraction increases; the MEGR increases, the corresponding optimal diameter and number of cylindrical pin-fin decrease as the HTL and the fluid velocity increase, respectively; when the shape of the heat sink can be morphed freely, the MEGR increases as the aspect ratio of the heat sink increases, and the corresponding optimal geometric parameters are different, which means there is no quadratic optimal constructs for the heat sink by taking MEGR as optimal objective. That is the less MEGR can be obtained by choosing the more fin-material fraction, the lower fluid velocity and the smaller aspect ratio of the heat sink in allowed range. The results can provide theoretical support for the MEG optimization design of in line cylindrical PFHS. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:通过使用构造理论和熵产生最小化(EGM)理论对固定的总散热器体积和翅片材料体积进行在线圆柱销-翅片散热器(PFHS)的优化。以最小熵产生率(MEGR)为目标,得出鳍形圆柱翅片的最佳结构,并考虑翅片材料分数,散热器的传热负荷(HTL)和流体速度对优化结果的影响。被研究。结果表明,对于散热器的固定形状,存在最佳直径可使EGR最小化; MEGR减小,随着翅片材料分数的增加,相应的最佳直径和圆柱销翅片的数量增加;随着HTL和流体速度的增加,MEGR增加,相应的最佳直径和圆柱销的数量减少。当散热器的形状可以自由变形时,随着散热器的长宽比增加,MEGR会增加,并且相应的最佳几何参数也不同,这意味着通过将MEGR用作散热器,散热器就没有二次最优构造。最佳目标。也就是说,通过在允许范围内选择更多的鳍片材料比例,更低的流体速度和更小的散热器长宽比,可以获得更少的MEGR。研究结果可为在线圆柱PFHS的MEG优化设计提供理论支持。 (C)2016 Elsevier Masson SAS。版权所有。

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