Computational Modeling of Coupled Free and Porous Media Flow for Membrane-based Filtration Systems: A Review

Antonios Parasyris, Christopher Brady, D. Das, M. Discacciati
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引用次数: 2

Abstract

We review different mathematical models proposed in literature to describe fluid-dynamic aspects in membrane-based water filtration systems. Firstly, we discuss the societal impact of water filtration, especially in the context of developing countries under emergency situations, and then review the basic concepts of membrane science that are necessary for a mathematical description of a filtration system. Secondly, we categorize the mathematical models available in the literature as (a) microscopic, if the pore-scale geometry of the membrane is accounted for; (b) reduced, if the membrane is treated as a geometrically lower-dimensional entity due to its small thickness compared to the free flow domain; (c) mesoscopic, if the characteristic geometrical dimension of the free flow domain and the porous domain is the same, and a multi-physics problem involving both incompressible fluid flow and porous media flow is considered. Implementation aspects of mesoscopic models in CFD software are also discussed with the help of relevant examples.
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膜基过滤系统中自由介质与多孔介质耦合流动的计算模型研究进展
我们回顾了文献中提出的描述膜基水过滤系统流体动力学方面的不同数学模型。首先,我们讨论了水过滤的社会影响,特别是在紧急情况下的发展中国家的背景下,然后回顾了过滤系统数学描述所必需的膜科学的基本概念。其次,我们将文献中可用的数学模型分类为:(a)微观的,如果考虑到膜的孔隙尺度几何形状;(b)减少,如果膜被视为几何上较低维的实体,因为它的厚度比自由流域小;(c) mesoscopic,如果自由流域和多孔域的特征几何尺寸相同,并且考虑了不可压缩流体流动和多孔介质流动的多物理场问题。结合相关实例,讨论了CFD软件中介观模型的实现问题。
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