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Multidomain-staggered coupling technique for Darcy-Navier Stokes multiphase flow: An application to CO2 geosequestration

机译:Darcy-Navier Stokes多相流的多域交错耦合技术:在二氧化碳地质封存中的应用

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This paper introduces a multidomain-staggered technique for coupling multiphase flow in a porous medium, dominated by the Darcy laminar flow, with multiphase flow in a wellbore, dominated by the Navier Stokes viscous, compressible flow. The Darcy flow in the porous medium is formulated using the averaging theory, and the Navier Stokes flow in the wellbore is formulated using the drift-flux model. The governing equations are discretized using a mixed discretization finite element scheme, in which the partition of unity finite element method, the level set method and the standard Galerkin finite element method are combined in an integrated numerical scheme. A multidomain technique is utilized to uncouple the physical system into two subdomains, coupled back by enforcing flow constraints at their interaction boundaries. The resulting system of equations is solved using an iterative staggered technique and a multiple time-stepping scheme. This combination between the multidomain technique and the staggered-multiple time-stepping technique enables the use of different mathematical and numerical formulations for the two subdomains, and facilitates the implementation of a standard finite element computer code. The proposed model is tailored to simulate sequestered CO2 leakage through heterogeneous geological formation layers and abandoned wellbores. A numerical example describing different leakage scenarios is given to demonstrate the computational capability of the model. The numerical results are compared to those obtained from a commercial simulator. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了一种多域交错技术,用于耦合以达西层流为主的多孔介质中的多相流和以纳维耶·斯托克斯粘性,可压缩流为主的井筒中的多相流。多孔介质中的达西流是用平均理论公式化的,井眼中的纳维斯托克斯流是使用漂移-通量模型的。控制方程采用混合离散化有限元方案离散化,其中将统一有限元方法,水平集方法和标准Galerkin有限元方法的划分组合为一个集成数值方案。利用多域技术将物理系统解耦为两个子域,并通过在它们的交互边界处强制执行流约束来将其耦合回来。使用迭代交错技术和多重时间步长方案来求解所得方程组。多域技术和交错多重时间步技术之间的这种结合使得可以对两个子域使用不同的数学和数值公式,并有助于实现标准的有限元计算机代码。拟议中的模型经过定制,可以模拟通过非均质地质构造层和废弃井筒的隔离式CO2泄漏。给出了描述不同泄漏场景的数值示例,以证明该模型的计算能力。将数值结果与从商业模拟器获得的结果进行比较。 (C)2016 Elsevier B.V.保留所有权利。

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