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Simulation of hydro-mechanically coupled processes in rough rock fractures using an immersed boundary method and variational transfer operators

机译:基于沉浸边界方法和变分传递算符的粗糙岩石裂缝水力耦合过程模拟

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摘要

Hydro-mechanical processes in rough fractures are highly non-linear and govern productivity and associated risks in a wide range of reservoir engineering problems. To enable high-resolution simulations of hydro-mechanical processes in fractures, we present an adaptation of an immersed boundary method to compute fluid flow between rough fracture surfaces. The solid domain is immersed into the fluid domain and both domains are coupled by means of variational volumetric transfer operators. The transfer operators implicitly resolve the boundary between the solid and the fluid, which simplifies the setup of fracture simulations with complex surfaces. It is possible to choose different formulations and discretization schemes for each subproblem and it is not necessary to remesh the fluid grid. We use benchmark problems and real fracture geometries to demonstrate the following capabilities of the presented approach: (1) resolving the boundary of the rough fracture surface in the fluid; (2) capturing fluid flow field changes in a fracture which closes under increasing normal load; and (3) simulating the opening of a fracture due to increased fluid pressure.
机译:粗裂缝中的水力机械过程是高度非线性的,并控制着生产率和各种油藏工程问题中的相关风险。为了能够对裂缝中的水力机械过程进行高分辨率模拟,我们提出了一种浸入边界方法的改编,以计算粗糙裂缝表面之间的流体流动。固体区域浸入流体区域,并且两个区域通过变分体积转移算子耦合。转移算子隐式地解决了固体和流体之间的边界,从而简化了复杂表面裂缝模拟的设置。可以为每个子问题选择不同的公式和离散化方案,并且不必重新排列流体网格。我们使用基准问题和实际裂缝几何形状来证明所提出方法的以下功能:(1)解决流体中粗糙裂缝表面的边界; (2)捕获裂缝的流体流场变化,该裂缝在法向载荷增加时闭合; (3)模拟由于流体压力增加而引起的裂缝的打开。

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