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Entropy generation due to natural convection cooling of a nanofluid

机译:由于纳米流体的自然对流冷却而产生的熵

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In the present work, entropy generation due to natural convection of a nanofluid that consists of water and Cu in a cavity with a protruded heat source has been studied. To investigate both the First and the Second Law of Thermodynamics for this considered problem the numerical scheme carried out based on finite volume method with the SIMPLE algorithm for pressure-velocity coupling. In this study, the effect of Rayleigh number, solid concentration and heat source location on entropy generation have been revealed. Consequently the optimum case has been selected since the thermal system could have the least entropy generation and the best heat transfer rate. The results have shown the maximum value of Nusselt number and minimum entropy generation are obtained when heat source mountains in the bottom horizontal wall.
机译:在目前的工作中,已经研究了由于在具有突出热源的空腔中由水和铜组成的纳米流体的自然对流而产生的熵。为了研究这一问题的热力学第一定律和第二定律,采用有限体积法和SIMPLE算法对压力-速度耦合进行了数值模拟。在这项研究中,揭示了瑞利数,固体浓度和热源位置对熵产生的影响。因此,选择了最佳情况,因为热系统的熵产生最少,传热速率也最佳。结果表明,在底部水平壁上有热源山时,可以获得Nusselt数的最大值和最小的熵产生。

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