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Numerical simulation of two-phase immiscible incompressible flows in heterogeneous porous media with capillary barriers

机译:具有毛细管屏障的非均质多孔介质中两相不可混不可压缩流动的数值模拟

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摘要

We present a new version of the sequential discontinuous Galerkin method introduced in Ern et al. (2010) [32] for two-phase immiscible incompressible flows in heterogeneous porous media with a discontinuous capillary field. Here, a new implementation of the extended interface condition, that does not use the threshold saturation value at the interface and permits treatment of different residual saturations in different rocks, is considered. Another novel ingredient is the implicit treatment of the diffusion term and the non-linear interface conditions in the saturation equation. The proposed method is validated in two-dimensional test cases and confirms theoretically known optimal orders of convergence. The numerical experiments demonstrate that for two-dimensional interface problems the method exhibits better performance on moderately refined meshes, which is particularly important for multidimensional heterogeneous problems related to realistic field studies. We consider also two heterogeneous five-spot benchmark problems to assess the potential of the proposed method in simulations of reservoirs with discontinuous permeability and capillary pressure fields in different types of rock.
机译:我们介绍了Ern等人介绍的顺序不连续Galerkin方法的新版本。 (2010)[32]在不连续的毛细管场的非均质多孔介质中的两相不可混不可压缩流。在这里,考虑了扩展界面条件的新实现方式,即不使用界面处的阈值饱和值,而是允许在不同岩石中处理不同的剩余饱和度。另一个新颖的成分是饱和方程中对扩散项和非线性界面条件的隐式处理。所提出的方法在二维测试案例中得到验证,并确认了理论上已知的最优收敛阶。数值实验表明,对于二维界面问题,该方法在中等精细的网格上表现出更好的性能,这对于与实际现场研究相关的多维异构问题尤为重要。我们还考虑了两个非均质的五点基准问题,以评估该方法在不同类型岩石中具有不连续渗透率和毛细压力场的油藏模拟中的潜力。

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