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Polyaxial stress-dependent permeability of a three-dimensional fractured rock layer

机译:三维裂隙岩层的多轴应力相关渗透率

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摘要

A study about the influence of polyaxial (true-triaxial) stresses on the permeability of a three-dimensional (3D) fractured rock layer is presented. The 3D fracture system is constructed by extruding a two-dimensional (2D) outcrop pattern of a limestone bed that exhibits a ladder structure consisting of a “through-going” joint set abutted by later-stage short fractures. Geomechanical behaviour of the 3D fractured rock in response to in-situ stresses is modelled by the finite-discrete element method, which can capture the deformation of matrix blocks, variation of stress fields, reactivation of pre-existing rough fractures and propagation of new cracks. A series of numerical simulations is designed to load the fractured rock using various polyaxial in-situ stresses and the stress-dependent flow properties are further calculated. The fractured layer tends to exhibit stronger flow localisation and higher equivalent permeability as the far-field stress ratio is increased and the stress field is rotated such that fractures are preferentially oriented for shearing. The shear dilation of pre-existing fractures has dominant effects on flow localisation in the system, while the propagation of new fractures has minor impacts. The role of the overburden stress suggests that the conventional 2D analysis that neglects the effect of the out-of-plane stress (perpendicular to the bedding interface) may provide indicative approximations but not fully capture the polyaxial stress-dependent fracture network behaviour. The results of this study have important implications for understanding the heterogeneous flow of geological fluids (e.g. groundwater, petroleum) in subsurface and upscaling permeability for large-scale assessments.
机译:提出了关于多轴(真三轴)应力对三维(3D)裂隙岩层渗透率影响的研究。 3D裂缝系统是通过挤压石灰岩床的二维(2D)露头模式构造而成的,该模式具有阶梯结构,该阶梯结构由与后期短裂缝邻接的“贯穿”接头组组成。 3D裂隙岩石响应于原地应力的地质力学行为是通过有限离散方法模拟的,该方法可以捕获矩阵块的变形,应力场的变化,重新存在的粗裂和新裂纹的扩展。 。设计了一系列数值模拟,以使用各种多轴原位应力加载裂隙岩石,并进一步计算了应力相关的流动特性。随着远场应力比的增加和应力场的旋转,断裂层倾向于表现出更强的流动局部性和更高的等效渗透率,从而使得断裂优先定向为剪切。原有裂缝的剪切扩张对系统中的流体局部化具有显着影响,而新裂缝的扩展则影响较小。上覆应力的作用表明,常规的二维分析忽略了平面外应力(垂直于层理界面)的影响,可能提供指示性的近似值,但不能完全捕获多轴应力相关的裂缝网络行为。这项研究的结果对于理解地下的地质流体(例如地下水,石油)的非均质流动和大规模渗透率的放大渗透具有重要意义。

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