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Entropy Generation of Double Diffusive Forced Convection in Porous Channels with Thick Walls and Soret Effect

机译:具有厚壁和索特效应的多孔通道中双扩散强迫对流的熵产生

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The second law performance of double diffusive forced convection in a horizontal porous channel with thick walls was considered. The Soret effect is included in the concentration equation and the first order chemical reaction was chosen for the concentration boundary conditions at the porous-solid walls interfaces. This investigation is focused on two principal types of boundary conditions. The first assumes a constant temperature condition at the outer surfaces of the solid walls, and the second assumes a constant heat flux at the lower wall and convection heat transfer at the upper wall. After obtaining the velocity, temperature and concentration distributions, the local and total entropy generation formulations were used to visualize the second law performance of the two cases. The results indicate that the total entropy generation rate is directly related to the lower wall thickness. Interestingly, it was observed that the total entropy generation rate for the second case reaches a minimum value, if the upper and lower wall thicknesses are chosen correctly. However, this observation was not true for the first case. These analyses can be useful for the design of microreactors and microcombustor systems when the second law analysis is taken into account.
机译:考虑了壁厚水平多孔通道中双扩散强迫对流的第二定律性能。 Soret效应包括在浓度方程中,并且选择了一级化学反应作为多孔-固体壁界面处的浓度边界条件。这项研究集中在两种主要的边界条件类型上。第一个假设在实体壁的外表面处于恒定的温度条件,第二个假设在下壁具有恒定的热通量,在上壁假设对流热传递。在获得速度,温度和浓度分布后,使用局部和总熵生成公式来可视化这两种情况的第二定律性能。结果表明,总熵产生率与较低的壁厚直接相关。有趣的是,观察到,如果正确选择上下壁厚,则第二种情况的总熵产生率达到最小值。但是,这种观察不适用于第一种情况。当考虑第二定律分析时,这些分析对于微反应器和微燃烧器系统的设计可能是有用的。

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