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A multi-layer reduced model for flow in porous media with a fault and surrounding damage zones

机译:具有故障和周围损伤区域多孔介质流量的多层减少模型

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摘要

In this work, we present a new conceptual model to describe fluid flow in a porous media system in presence of a large fault. Geological faults are often modeled simply as interfaces in the rock matrix, but they are complex structures where the high strain core is surrounded by the so called damage zones, characterized by the presence of smaller fractures which enhance the permeability of the medium. To obtain reliable simulation outcomes, the damage zone as well as the fault, have to be accurately described. The new model proposed in this work considers both these regions as lower dimensional and embedded in the rock matrix. The model is presented, analyzed, and tested in several configurations to prove its robustness and ability to capture many important features, such as high contrast and heterogeneity of permeability.
机译:在这项工作中,我们提出了一种新的概念模型,以在大故障存在下描述多孔介质系统中的流体流动。地质故障通常被简单地模拟作为岩石矩阵中的界面,但它们是复杂的结构,其中高应变芯被所谓的损伤区域包围,其特征在于存在较小的骨折,其增强介质的渗透性。为了获得可靠的模拟结果,必须准确地描述损坏区域以及故障。本作工作中提出的新模型认为这些区域都是较低维度和嵌入在岩石矩阵中的区域。在几种配置中呈现,分析和测试该模型,以证明其培养许多重要特征的鲁棒性和能力,例如高对比度和渗透性的异质性。

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