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Entropy generation of viscous dissipative flow in thermal non-equilibrium porous media with thermal asymmetries

机译:具有热不对称性的热非平衡多孔介质中粘性耗散流的熵产生

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摘要

The effect of thermal asymmetrical boundaries on entropy generation of viscous dissipative flow of forced convection in thermal non-equilibrium porous media is analytically studied. The two-dimensional temperature, Nusselt number and entropy generation contours are analysed comprehensively to provide insights into the underlying physical significance of the effect on entropy generation. By incorporating the effects of viscous dissipation and thermal non-equilibrium, the first-law and second-law characteristics of porous-medium flow are investigated via various pertinent parameters, i.e. heat flux ratio, effective thermal conductivity ratio, Darcy number, Blot number and averaged fluid velocity. For the case of symmetrical wall heat flux, an optimum condition with a high Nusselt number and a low entropy generation is identified at a Darcy number of 10(-4), providing an ideal operating condition from the second-law aspect. This type of heat and fluid transport in porous media covers a wide range of engineering applications, involving porous insulation, packed-bed catalytic process in nuclear reactors, filtration transpiration cooling, and modelling of transport phenomena of microchannel heat sinks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:分析研究了非对称热边界对热非平衡多孔介质中强迫对流粘性耗散流熵产生的影响。全面分析了二维温度,Nusselt数和熵生成等值线,以深入了解影响熵生成的潜在物理意义。通过结合粘性耗散和热不平衡的影响,通过各种相关参数,即热通量比,有效导热率,达西数,印迹数和热力学系数,研究了多孔介质流的第一律和第二律特性。平均流体速度。对于壁热通量对称的情况,在达西数为10(-4)的情况下,可以确定具有高努塞尔特数和低熵产生的最佳条件,从第二法则方面可以提供理想的工作条件。这种在多孔介质中的热和流体传输涵盖了广泛的工程应用,包括多孔绝缘,核反应堆中的填充床催化过程,过滤蒸腾冷却以及微通道散热器的传输现象建模。 (C)2015 Elsevier Ltd.保留所有权利。

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