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Identification of reactivation and increased permeability associated with a fault damage zone using a multidisciplinary approach

机译:使用多学科方法识别与断层破坏带相关的复活和增加的渗透率

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We evaluate the fault damage zone associated with a reactivated long-strike length, small-offset normal fault in the Permian Cedar Mesa Sandstone, southeastern Utah. This fault is characterized by a single slip surface and a 9-m wide damage zone containing deformation bands and veins. Field observations include cross-cutting relationships, permeability increase, rock strength decrease, and ultraviolet-light-induced mineral fluorescence within the damage zone. These field observations, combined with the interpreted structural diagenetic sequence from petrographic analysis, suggest a deformation history of reactivation and several generations of mineralization. All deformation bands and calcite veins fluoresce under ultraviolet light, indicating fluid pathway connectivity and a shared mineralization history. Pre-existing structures act as loci for younger deformation and mineralization events, so this fault and its damage zone illustrate the importance of the fault damage zone to subsurface fluid flow. We model a simplified stress history to understand the importance rock properties and variations in differential and effective mean stress have on the structures within the damage zone. The moderate confining pressures, possible variations in pore pressure, and porous, fine-grained nature of the Cedar Mesa Sandstone produces a fault damage zone characterized by enhanced permeability and mineralization.
机译:我们评估了犹他州东南部二叠纪Cedar Mesa砂岩中重新激活的长行程,小偏移正断层的断层破坏带。该断层的特征是一个单一的滑动面和一个9 m宽的破坏带,其中包含形变带和脉。现场观察包括横切关系,渗透率增加,岩石强度降低以及损伤区内紫外线诱导的矿物荧光。这些现场观察结果与岩石学解释的构造成岩作用序列相结合,表明了重新活化的变形历史和几代矿化作用。所有形变带和方解石脉在紫外光下发出荧光,表明流体通道的连通性和共享的矿化历史。既有的结构充当年轻变形和矿化事件的场所,因此该断层及其破坏带说明了断层破坏带对地下流体流动的重要性。我们对简化的应力历史进行建模,以了解损坏区域内结构的重要岩石特性以及微分和有效平均应力的变化。雪松台地砂岩的中等围压,孔隙压力可能的变化以及多孔细粒度的性质会产生断层破坏带,其特征在于渗透性和矿化度提高。

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