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Re-evaluation of the Nusselt number for determining the interfacial heat and mass transfer coefficients in a flow-through monolithic catalytic converter

机译:重新计算Nusselt值,以确定流通式整体式催化转化器中的界面传热和传质系数

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摘要

The two-equation porous medium model has been widely employed for modeling the flow-through monolithic catalytic converter. In this model, the interfacial heat and mass transfer coefficients have been usually obtained using the asymptotic Nusselt and Sherwood numbers with some suitable assumptions. However, previously it seemed that there existed some misunderstanding in adopting these Nusselt and Sherwood numbers. Up to now, the Nusselt number based on the fluid bulk mean temperature has been used for determining the interfacial heat and mass transfer coefficients. However, the mass and energy balance formulations in the two-equation model indicate that the Nusselt number should be evaluated based on the fluid mean temperature instead of the fluid bulk mean temperature. Therefore, in this study, to correctly model the heat and mass transfer coefficients, the Nusselt number based on the fluid mean temperature was newly obtained for the square and circular cross-sections under two different thermal boundary conditions (i.e., constant heat flux and constant temperature at the wall). in order to do that, the present study employed the numerical as well as analytical method. (C) 2008 Elsevier Ltd. All rights reserved.
机译:两方程式多孔介质模型已被广泛用于对流通式整体式催化转化器进行建模。在该模型中,通常使用渐近Nusselt和Sherwood数并采用一些合适的假设来获得界面传热和传质系数。但是,以前似乎在采用这些Nusselt和Sherwood编号时存在一些误解。到目前为止,基于流体体积平均温度的努塞尔数已用于确定界面传热和传质系数。但是,两方程模型中的质量和能量平衡公式表明应根据流体平均温度而不是流体体积平均温度来评估Nusselt数。因此,在这项研究中,为了正确地模拟传热和传质系数,在两个不同的热边界条件(即恒定热通量和恒定温度)下,针对正方形和圆形横截面,重新获得了基于流体平均温度的努塞尔数。墙温度)。为了做到这一点,本研究采用了数值和分析方法。 (C)2008 Elsevier Ltd.保留所有权利。

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