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PorePy: an open-source software for simulation of multiphysics processes in fractured porous media

机译:POREPY:用于模拟骨折多孔介质中的多体液过程的开源软件

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Development of models and dedicated numerical methods for dynamics in fractured rocks is an active research field, with research moving towards increasingly advanced process couplings and complex fracture networks. The inclusion of coupled processes in simulation models is challenged by the high aspect ratio of the fractures, the complex geometry of fracture networks, and the crucial impact of processes that completely change characteristics on the fracture-rock interface. This paper provides a general discussion of design principles for introducing fractures in simulators, and defines a framework for integrated modeling, discretization, and computer implementation. The framework is implemented in the open-source simulation software PorePy, which can serve as a flexible prototyping tool for multiphysics problems in fractured rocks. Based on a representation of the fractures and their intersections as lower-dimensional objects, we discuss data structures for mixed-dimensional grids, formulation of multiphysics problems, and discretizations that utilize existing software. We further present a Python implementation of these concepts in the PorePy open-source software tool, which is aimed at coupled simulation of flow and transport in three-dimensional fractured reservoirs as well as deformation of fractures and the reservoir in general. We present validation by benchmarks for flow, poroelasticity, and fracture deformation in porous media. The flexibility of the framework is then illustrated by simulations of non-linearly coupled flow and transport and of injection-driven deformation of fractures. All results can be reproduced by openly available simulation scripts.
机译:裂缝岩石动力学模型和专用数值方法的开发是一个活跃的研究领域,具有朝向日益先进的工艺联轴器和复杂骨折网络的研究。在仿真模型中包含耦合过程受到裂缝的高纵横比,裂缝网络的复杂几何形状的高纵横比,以及在骨折岩石界面上完全改变特性的过程的关键影响。本文提供了对模拟器中引入骨折的设计原则的一般性讨论,并定义了集成建模,离散化和计算机实现的框架。该框架是在开源仿真软件Porepy中实现的,可以作为骨折岩石中的多体性问题的灵活原型工具。基于裂缝及其交叉口作为低维对象的表示,我们讨论用于混合维网格的数据结构,多体性问题的配方,以及利用现有软件的离散化。我们进一步提出了Poyth开源软件工具中这些概念的Python实现,该概念旨在耦合在三维裂缝储存器中的流量和传输的仿真以及骨折和储存器的变形。我们通过基准,多孔介质中的骨折,骨折和断裂变形呈现验证。然后通过模拟非线性耦合的流动和运输和裂缝的注射驱动的变形来说明框架的灵活性。所有结果都可以通过公开可用的模拟脚本再现。

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