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Numerical scheme for coupling two-phase compositional porous-media flow and one-phase compositional free flow

机译:两相成分多孔介质流与一相成分自由流耦合的数值方案

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We present the numerical implementation of a model that couples single-phase free and two-phase porous-media flow and transport with the focus on the treatment of the interface conditions. The model concept is based on the two-domain approach and on non-isothermal compositional submodels. These are coupled by interface conditions accounting for mass, momentum and energy transfer, and guaranteeing continuity of fluxes. A vertex-centred finite-volume scheme is used throughout the domain and a global matrix is solved for the whole system incorporating the coupling matrices. The fluxes at the interface are calculated indirectly via a flux balance from the adjacent finite-volume boxes. Numerical examples, representing evaporation from partially saturated porous media influenced by an ambient air flow, illustrate the evolution of saturation and temperature in a reference case and demonstrate the coupling concept. Furthermore, the effect of temperature, Beavers–Joseph coefficient and permeability on the evaporation process are examined with a series of simulations. In the presented set-ups, the choice of the Beavers–Joseph coefficient has a negligible influence on the evaporation rate across the interface.
机译:我们提出了一个模型的数值实现,该模型结合了单相自由相和两相多孔介质的流动和传输,重点是界面条件的处理。模型概念基于两域方法和非等温成分子模型。这些通过考虑质量,动量和能量传递并保证通量连续性的界面条件结合在一起。在整个域中使用以顶点为中心的有限体积方案,并为包含耦合矩阵的整个系统求解全局矩阵。界面处的通量是通过相邻有限体积盒中的通量平衡间接计算的。数值示例代表了受环境空气流影响而从部分饱和的多孔介质中蒸发的情况,这些数值示例说明了参考情况下饱和度和温度的变化并演示了耦合概念。此外,通过一系列模拟研究了温度,海狸-约瑟夫系数和渗透率对蒸发过程的影响。在提出的设置中,Beavers-Joseph系数的选择对整个界面上的蒸发速率的影响可以忽略不计。

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