多孔介质中多相流的全隐式保界非连续伽勒金算法与非结构化块预处理器

IF 4 2区 环境科学与生态学 Q1 WATER RESOURCES
Jiali Tu , Haijian Yang , Rongliang Chen , Li Luo
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引用次数: 0

摘要

多孔介质中多相流的大规模并行模拟具有挑战性,这是因为多孔介质中的多相流具有高度非线性的调控方程、各种复杂的建模特征以及材料系数的显著异质性。本文介绍了一种专为并行计算机设计的全隐式非连续伽勒金(DG)储层模拟器,用于处理大规模多相流模拟。我们的方法在三维非结构网格上制定了全隐式 DG 方案,以离散非线性控制方程,其中考虑了毛细管效应、渗透率异质性、重力和注水井/生产井。在全隐式 DG 框架内采用了基于顶点的斜率限制器,以抑制不连续性附近的振荡并确保解的约束性。我们使用带有解析雅各布的非精确牛顿-克雷洛夫算法系列来处理全隐式离散化产生的非线性系统。此外,我们还采用了一种非结构化块式预处理器,该预处理器具有高效的重叠加法施瓦茨近似,可加速迭代收敛并增强模拟器的可扩展性。我们在三维非结构网格上对基准和现实水库问题进行了大规模模拟,以证明所提出的水库模拟器的效率和可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully implicit bound-preserving discontinuous Galerkin algorithm with unstructured block preconditioners for multiphase flows in porous media
Massively parallel simulation of multiphase flows in porous media is challenging due to the highly nonlinear governing equations with the complexity of various modeling features and the significant heterogeneity of material coefficients. In this paper, we introduce a fully implicit discontinuous Galerkin (DG) reservoir simulator designed for parallel computers to handle large-scale multiphase flow simulations. Our approach formulates a fully implicit DG scheme on 3D unstructured grids to discretize the nonlinear governing equations, which take into account capillary effects, permeability heterogeneity, gravity, and injection/production wells. A vertex-based slope limiter within the fully implicit DG framework is adopted to suppress oscillations near discontinuities and ensure the boundedness of the solution. We address the resulting nonlinear systems from the fully implicit discretization using a family of inexact Newton–Krylov algorithms with an analytic Jacobian. Moreover, we employ an unstructured block-type preconditioner with an efficient overlapping additive Schwarz approximation to accelerate the convergence of iterations and enhance the scalability of the simulator. Large-scale simulations of both benchmark and realistic reservoir problems on 3D unstructured grids are conducted to demonstrate the efficiency and scalability of the proposed reservoir simulator.
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来源期刊
Advances in Water Resources
Advances in Water Resources 环境科学-水资源
CiteScore
9.40
自引率
6.40%
发文量
171
审稿时长
36 days
期刊介绍: Advances in Water Resources provides a forum for the presentation of fundamental scientific advances in the understanding of water resources systems. The scope of Advances in Water Resources includes any combination of theoretical, computational, and experimental approaches used to advance fundamental understanding of surface or subsurface water resources systems or the interaction of these systems with the atmosphere, geosphere, biosphere, and human societies. Manuscripts involving case studies that do not attempt to reach broader conclusions, research on engineering design, applied hydraulics, or water quality and treatment, as well as applications of existing knowledge that do not advance fundamental understanding of hydrological processes, are not appropriate for Advances in Water Resources. Examples of appropriate topical areas that will be considered include the following: • Surface and subsurface hydrology • Hydrometeorology • Environmental fluid dynamics • Ecohydrology and ecohydrodynamics • Multiphase transport phenomena in porous media • Fluid flow and species transport and reaction processes
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