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On multicomponent gas diffusion and coupling concepts for porous media and free flow: a benchmark study

机译:多孔介质的多组分气体扩散与耦合概念及自由流动:基准研究

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Multicomponent gas transport in porous media and at the interface between porous media and free flow occurs in a wide range of technical and environmental systems. Modeling tools are required for the quantitative description of such coupled environmental compartments. We present a benchmark study to compare different diffusion models as well as different coupling concepts employed for the description of multicomponent gas flow and transport at the porous medium/free-flow interface. The benchmark problems allowed us to compare two diffusion models (Fickian and Maxwell-Stefan formulations) for predicting the transport behavior of multicomponent mixtures in porous media and in presence of a free flow. The examples highlighted the importance of interaction between different diffusing components by applying the Maxwell-Stefan formulation, as well as the impact of the free flow velocity on gas migration at the interface under diffusion- and advection-dominated conditions. The problems were solved using two simulation tools, incorporating different coupling concepts to describe the physics of flow and transport processes. In COMSOL Multiphysics, we implemented a single-domain Brinkman approach, whereas in the DuMu(X) simulator we used a two-domain approach with the Navier-Stokes equation for the free flow and Darcy's law for the porous medium. Also, the formulation of the Maxwell-Stefan equation for multicomponent transport was different between the two codes. Despite the different modeling concepts, mathematical descriptions and numerical schemes implemented in the two simulators, their outcomes demonstrate excellent agreement for all benchmark problems, as well as the capability to reproduce the results of previous modeling and experimental studies.
机译:多孔介质中的多组分气体输送和多孔介质与自由流动​​之间的界面发生在各种技术和环境系统中。这种连接环境隔室的定量描述需要建模工具。我们提出了一种基准研究,可以比较不同的扩散模型以及用于在多孔介质/自由流界面的多组分气体流动的描述和运输的不同耦合概念。基准问题允许我们比较两个扩散模型(Fickian和Maxwell-Stefan配方),以预测多孔介质中多组分混合物的传输行为和在空闲流动中。这些实施例突出了通过施加Maxwell-Stefan制剂来施加不同扩散部件之间的相互作用的重要性,以及在扩散和平面主导的条件下的界面上的空气迁移对气体迁移的影响。使用两种模拟工具解决了问题,包括不同的耦合概念来描述流动和运输过程的物理。在COMSOL Multiphysics中,我们实施了一个单一域的Brinkman方法,而在Dumu(x)模拟器中,我们使用了一种与Navier-Stokes方程的双域方法,为多孔介质的自由流动和达西法律。而且,对于两种代码之间的多组分传输的Maxwell-Stefan方程的配方不同。尽管在两个模拟器中实现了不同的建模概念,数学描述和数值方案,其结果表明了所有基准问题的良好协议,以及再现先前建模和实验研究结果的能力。

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