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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Predictive model of solute transport with reversible adsorption in spatially periodic hierarchical porous media
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Predictive model of solute transport with reversible adsorption in spatially periodic hierarchical porous media

机译:空间周期性分级多孔介质中具有可逆吸附的溶质运移预测模型

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Solute transport in hierarchical porous media with reversible adsorption is predicted by the volume averaging method. A transient macroscopic advection-diffusion equation is derived to describe the multiscale solute transport problem. The theoretical expression of the dispersion tensor is obtained which is the function of pore-scale velocity profile. Steady closure equations are derived to calculate the dispersion tensor. With the aid of pore-scale simulation in unit cells of the hierarchical porous media, the dispersion tensor can be calculated. The model is verified by comparing its predictions and obtaining favorable agreement with results of direct numerical simulations and with experimental data for columns comprised of ordered, porous pillars. It is straightforward to use the model to predict the solute transport behavior in fixed beds packed with particles. (C) 2015 Elsevier B.V. All rights reserved,
机译:通过体积平均法预测具有可逆吸附的分级多孔介质中的溶质运移。推导了一个瞬态宏观对流扩散方程来描述多尺度溶质运移问题。得到了色散张量的理论表达式,它是孔隙尺度速度分布的函数。推导稳定的闭合方程来计算色散张量。借助于分层多孔介质的晶胞中的孔尺度模拟,可以计算分散张量。通过比较模型的预测并与直接数值模拟的结果以及由有序多孔柱组成的柱的实验数据取得有利的一致性,对模型进行验证。使用该模型来预测填充有颗粒的固定床中的溶质运移行为非常简单。 (C)2015 Elsevier B.V.保留所有权利,

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