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Applying Massively Parallel Interface for MPFA scheme with advanced linearization for fluid flow in porous media
Li LL(李龙龙); Khait, Mark; Voskov, Denis; Terekhov, KirillM; Abushaikha, Ahmad
通讯作者Li, Longlong([email protected]) ; Abushaikha, Ahmad([email protected])
发表期刊JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING
2023
卷号220页码:18
ISSN0920-4105
摘要We apply Massively Parallel Interface for MPFA-O scheme with state-of-the-art Operator-Based Linearization (OBL) approach for multiphase flow in porous media. The implementation of MPFA-O scheme enhances the modelling capabilities for non -K-orthogonal mesh. A fully implicit scheme is applied to guarantee the stability of solutions when a mass-based formulation is involved to keep the flexibility of the framework for general-purpose reservoir simulation. As the MPFA-O introduces more non-zeros elements in the Jacobian matrix than the traditional TPFA, massively parallel computations via Message Passing Interface (MPI) in this work help to guarantee competitive computational efficiency for high-fidelity geological models. Concerning the Jacobian assembly hassle, we apply the OBL approach which introduces operators combining the fluid and rock properties in the conservation equations and discretizes the operators in the physical parameter space. By computing values and derivatives of the operators via a multilinear interpolation, the assembly of Jacobian matrix and residual vector could be drastically simplified. Another benefit of the OBL is that by only evaluating operator values on the predefined nodes in the physical parameter space, the overhead related to complex phase behavior and property evaluation is significantly reduced. In the end, we present several benchmark cases to rigorously demonstrate the accuracy, convergence, and robustness of the framework and two challenging field-scale cases to further prove its computing performance and parallel scalability.
关键词Reservoir simulation Parallel framework Multipoint flux approximation Operator -based linearization Unstructured grid Full tensor permeability
DOI10.1016/j.petrol.2022.111190
收录类别SCI ; EI
语种英语
WOS记录号WOS:000891781400003
关键词[WOS]OPERATOR-BASED LINEARIZATION ; FINITE-VOLUME DISCRETIZATION ; QUADRILATERAL GRIDS ; MIXED-HYBRID ; APPROXIMATION METHOD ; DIFFUSION-PROBLEMS ; 2-PHASE FLOW ; O-METHOD ; CONVERGENCE ; SIMULATION
WOS研究方向Energy & Fuels ; Engineering
WOS类目Energy & Fuels ; Engineering, Petroleum
资助项目National Priorities Research Program from Qatar National Research Fund[NPRP10-0208-170407]
项目资助者National Priorities Research Program from Qatar National Research Fund
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力学所作者排名1
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被引频次:4[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://dspace.imech.ac.cn/handle/311007/91085
专题流固耦合系统力学重点实验室
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Li LL,Khait, Mark,Voskov, Denis,et al. Applying Massively Parallel Interface for MPFA scheme with advanced linearization for fluid flow in porous media[J]. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING,2023,220:18.
APA 李龙龙,Khait, Mark,Voskov, Denis,Terekhov, KirillM,&Abushaikha, Ahmad.(2023).Applying Massively Parallel Interface for MPFA scheme with advanced linearization for fluid flow in porous media.JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING,220,18.
MLA 李龙龙,et al."Applying Massively Parallel Interface for MPFA scheme with advanced linearization for fluid flow in porous media".JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING 220(2023):18.
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