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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A DG-based interface element method for modeling hydraulic fracturing in porous media
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A DG-based interface element method for modeling hydraulic fracturing in porous media

机译:一种基于DG的界面元件方法,用于在多孔介质中建模液压压裂

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Fracture propagation coupled with fluid flow in porous media has very important applications in fracking in oil and gas reservoirs, corrosion in ceramics, and degradation of human bones. Modeling fracture failure in porous media governed by the coupled solid and fluid field equations is challenging and time-consuming. This paper extends discontinuous Galerkin (DG) finite element methods to model crack openings in porous media through exploiting an easy construction of interfaces for potential crack paths by locally breaking continuous elements. Consequently, a finite element mesh for fracture apertures is completely and gracefully constructed using DG interface objects as well as the definitions of jumps of displacements across the DG interfaces defined for bulk matrices. Furthermore, rigid cohesive laws often adopted for crack openings can be naturally implemented in DG formulations without introducing artificial stiffness, which may eventually improve the performance for implicit formulations in handling crack openings in porous media. In this work, we perform a consistent, fully implicit, and fully coupled hybrid DG/continuous finite element formulation for three field equations including the solid, bulk fluid, and fluid in fracture apertures resulting from crack openings. We verify our DG formulation and implementation using the Khristianovich-Geertsma-DeKlerk analytical solutions. Finally, we further demonstrate a good performance of the proposed DG method by modeling fracking in an oil reservoir containing two nature fractures.(C) 2020 Elsevier B.V. All rights reserved.
机译:与多孔介质中的流体流耦合的骨折传播具有非常重要的应用,在油气储存器中的压裂,陶瓷中的腐蚀和人体骨骼的降解。由耦合固体和流体场方程管辖的多孔介质中的裂缝破坏是挑战性和耗时的。本文延伸了不连续的Galerkin(DG)有限元方法,通过利用局部破裂的连续元件来轻松地构造潜在的裂纹路径的易于建造来模拟多孔介质的破裂开口。因此,使用DG接口对象完全且优雅地构造用于裂缝孔的有限元啮合,以及用于为批量矩阵定义的DG接口的位移的跳转的定义。此外,通常用于破裂开口的刚性粘性法律可以在DG制剂中自然地实现,而不引入人工刚度,这可能最终提高了在处理多孔介质中处理裂缝开口方面的隐含制剂的性能。在这项工作中,我们对包括固体,散装液和由裂缝开口产生的裂缝孔中的流体进行三个场方程进行一致,完全隐含和完全耦合的混合体配方。我们使用Khristianovich-Geertsma-Deklerk分析解决方案验证我们的DG配方和实现。最后,我们进一步通过含有两个自然骨折的油藏在储油液体中建模的建议的DG方法表现出良好的性能。(c)2020 Elsevier B.v.保留所有权利。

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