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Constraints upon fault zone properties by combined structural analysis of virtual outcrop models and discrete fracture network modelling

机译:虚拟露头模型组合结构分析与离散骨折网络建模的结构分析对故障区特性的限制

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The permeability structure of a fault zone is strongly dependent on the occurrence of meso-scale fracture patterns within the damage zone. Here, structural analyses of Virtual Outcrop Models (VOM) integrated with Discrete Fracture Network (DFN) modelling are used to constrain the relationship between meso-scale fracture patterns and the bulk permeability of a regional-scale fault zone. The Goddo Fault Zone (GFZ, Bomlo - Norway) is a longlived extensional fault zone cutting across a granodioritic body developed during the long-lasting rifting of the North Sea. Fracture geometrical characteristics and the spatial variation of fracture intensity derived from VOM structural analysis were adopted as input for stochastic DFN models representing selected portions of the GFZ to constrain the variability of the structural permeability tensor K related to the mesoscopic fracture pattern. The intensity of fault-related fracture set(s), and the associated structural permeability computed with DFN models, likely exhibits a decreasing power-law trend within the damage zone with increasing distance from the fault cores. The orientation of the maximum K tensor component is controlled by the intersection direction of the dominant fracture sets. These results highlight the fundamental role of mesoscopic fracture patterns in controlling the bulk petrophysical properties of large fault zones.
机译:断层区域的渗透结构强烈依赖于损伤区内的中间尺度裂缝图案的发生。这里,与离散裂缝网络(DFN)建模集成的虚拟露头模型(VOM)的结构分析用于约束中间尺度断裂模式与区域尺度断层区的大量渗透率之间的关系。 Goddo断层区(GFZ,Bomlo - 挪威)是在北海的长期河流中开发的Granodioritic身体上的一个长效的延伸断线区域。裂缝几何特征和源自VOM结构分析的断裂强度的空间变化作为表现为GFZ的所选部分的随机DFN模型的输入,以限制与介术裂缝图案相关的结构渗透性张量k的可变性。与DFN型号计算的故障相关骨折组的强度和相关的结构磁导率,可能在损伤区内呈现降低的幂律趋势,随着来自故障核心的距离增加。最大K张量分量的取向由主要裂缝组的交叉点控制。这些结果突出了介于骨折模式控制大断层区的散装岩石物理特性的基本作用。

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