We present a multi-resolution approach for constructing model-based simulations of hydraulic fracturing, wherein flow through porous media is coupled with fluid-driven fracture. The approach consists of a hybrid scheme that couples a discrete crack representation in a global domain to a phase-field representation in a local subdomain near the crack tip. The multi-resolution approach addresses issues such as the computational expense of accurate hydraulic fracture simulations and the difficulties associated with reconstructing crack apertures from diffuse fracture representations. In the global domain, a coupled system of equations for displacements and pressures is considered. The crack geometry is assumed to be fixed and the displacement field is enriched with discontinuous functions. Around the crack tips in the local subdomains, phase-field sub-problems are instantiated on the fly to propagate fractures in arbitrary, mesh independent directions. The governing equations and fields in the global and local domains are approximated using a combination of finite-volume and finite element discretizations. The efficacy of the method is illustrated through various benchmark problems in hydraulic fracturing, as well as a new study of fluid-driven crack growth around a stiff inclusion.
翻译:我们提出了一个多分辨率方法,用于构建基于模型的液压碎裂模拟模型,通过多孔介质流经多孔介质流经流体驱动断裂。该方法包括一种混合办法,将全球范围内离散的裂缝代表器与全球范围内的分层代表器结合起来,在裂裂缝附近的地方分层代表器中进行分野代表器。多分辨率方法处理精确液压碎裂模拟的计算费用以及从分散的裂缝表示中重建裂缝所遇到的困难等问题。在全球范围内,考虑一个混合的流离失所和压力方程系统。裂缝几何法假定是固定的,而偏移场则由不连续的功能加以丰富。围绕地方次界块的裂缝点,分层次问题即刻在苍蝇上,以任意的、网状独立方向传播断裂缝。全球和地方范围内的正方程和领域治理方程和领域是使用有限量和有限元素分解的组合来比较的。该方法的功效通过液压断裂的各种基准问题加以说明,以及围绕僵硬包容进行新的流力驱动的裂裂缝研究来说明。