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Coupled numerical approach combining finite volume and lattice Boltzmann methods for multi-scale multi-physicochemical processes

机译:有限体积和格子玻尔兹曼方法相结合的数值方法用于多尺度多物理化学过程

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摘要

A coupled (hybrid) simulation strategy spatially combining the finite volume method (FVM) and the lattice Boltzmann method (LBM), called CFVLBM, is developed to simulate coupled multi-scale multi-physicochemical processes. In the CFVLBM, computational domain of multi-scale problems is divided into two sub-domains, i.e., an open, free fluid region and a region filled with porous materials. The FVM and LBM are used for these two regions, respectively, with information exchanged at the interface between the two sub-domains. A general reconstruction operator (RO) is proposed to derive the distribution functions in the LBM from the corresponding macro scalar, the governing equation of which obeys the convection-diffusion equation. The CFVLBM and the RO are validated in several typical physicochemical problems and then are applied to simulate complex multi-scale coupled fluid flow, heat transfer, mass transport, and chemical reaction in a wall-coated micro reactor. The maximum ratio of the grid size between the FVM and LBM regions is explored and discussed.
机译:在空间上结合了有限体积法(FVM)和格子玻尔兹曼法(LBM)的耦合(混合)仿真策略CFVLBM,以模拟耦合的多尺度多物理化学过程。在CFVLBM中,多尺度问题的计算域分为两个子域,即一个开放的自由流体区域和一个充满多孔材料的区域。 FVM和LBM分别用于这两个区域,并且在两个子域之间的接口处交换信息。提出了一种通用重构算子(RO),从相应的宏标量中导出LBM中的分布函数,该宏标量的控制方程服从对流扩散方程。 CFVLBM和RO在几个典型的物理化学问题中得到了验证,然后被应用于模拟复杂的多尺度耦合流体流动,传热,传质以及壁式微反应器中的化学反应。探索和讨论了FVM和LBM区域之间的网格大小的最大比率。

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