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A theoretical study of entropy generation of the combustion phenomenon in the porous medium burner

机译:多孔介质燃烧器燃烧现象熵产生的理论研究

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In this paper, a symmetric two-dimensional numerical model for premixed methane-air combustion in a porous medium has been developed. For this purpose, multi-step mechanisms and variable porosity have been used and the effects of them on the entropy generation rate have been investigated. This model solves the continuity, Navier Stokes, the solid and gas energy, the chemical species transport equations and entropy generation rate equations by using the finite volume method and the pressure and velocity have been coupled with the SIMPLE algorithm. The results reveal that the entropy generation due to heat transfer has the highest contribution to entropy generation and after that are the chemical reactions, mass diffusion, and friction respectively. When used from porosity variation the entropy generation rate due to heat transfer, chemical reaction and friction are reduced and for the entropy generation due to mass diffusion is vice versa. (C) 2019 Published by Elsevier Ltd.
机译:本文建立了一种用于多孔介质中甲烷-空气预混合燃烧的对​​称二维数值模型。为此,已使用了多步机制和可变孔隙度,并研究了它们对熵产生率的影响。该模型使用有限体积法求解了连续性,Navier Stokes,固体和气体能量,化学物质迁移方程和熵产生速率方程,并且压力和速度已与SIMPLE算法耦合。结果表明,由热传递引起的熵产生对熵产生的贡献最大,其后分别是化学反应,质量扩散和摩擦。当根据孔隙率变化使用时,由于传热,化学反应和摩擦引起的熵产生率降低,而由于质量扩散引起的熵产生反之亦然。 (C)2019由Elsevier Ltd.发布

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