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Algebraic Dynamic Multilevel (ADM) Method for Immiscible Multiphase Flow in Heterogeneous Porous Media with Capillarity

机译:用毛细管性异质多孔介质中不混溶多相流的代数动态多级(ADM)方法

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An algebraic dynamic multilevel method (ADM) is developed for fully-implicit (FIM) simulations of multiphase flow in heterogeneous porous media with strong non-linear physics The fine-scale resolution is defined based on the heterogeneous geological one. Then. ADM constructs a space-time adaptive FIM system on a dynamically defined multilevel nested grid The multilevel resolution is defined using an error estimate criterion, aiming to minimize the accuracy-cost trade-off ADM is algebraically described by employing sequences of adaptive multilevel restriction and prolongation operators. Finite-volume conservative restriction operators are considered whereas different choices for prolongation operators are employed for different unknowns. The ADM method is applied to challenging heterogeneous test cases with strong nonlinear heterogeneous capillary effects. It is illustrated that ADM provides accurate solution by employing only a fraction of the total number of fine-scale grid cells ADM is an important advancement for multiscale methods because it solves for all coupled unknowns (here, both pressure and saturation) simultaneously on arbitrary adaptive multilevel grids. At the same time, it is a significant step forward in the application of dynamic local grid refinement techniques to heterogeneous formations without relying on upscaled coarse-scale quantities.
机译:代数动态多级方法(ADM)是为全均匀多孔介质中的多相流模拟的,具有强烈的非线性物理,基于异质地质介质来定义微尺度分辨率。然后。 ADM在动态定义的多级嵌套网格上构造了一个时空自适应FIM系统,使用误差估计标准定义多级分辨率,旨在通过采用自适应多级限制和延长的序列来最小化准确性成本折衷ADM代数。运营商。有限批量保守限制运营商被认为是用于不同未知的延长运营商的不同选择。 ADM方法适用于具有强非线性异质毛细管效应的挑战异质测试案例。示出了ADM通过仅采用精确的细纹网格细胞总数的一小部分提供准确的解决方案,这是多尺度方法的重要进步,因为它在任意自适应上同时解决所有耦合的未知数(这里,压力和饱和度)多级网格。同时,在应用动态本地网格细化技术与异质形成的情况下,这是一个重要的一步,而无需依赖于上升粗级数量。

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