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Geometry and kinematic evolution of Riedel shear structures, Capitol Reef National Park, Utah

机译:里德尔剪切结构的几何学和运动学演化,犹他州国会礁国家公园

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Riedel shear structures are common fault patterns identified within shear zones and related to the embryonic stages of fault formation. This study focuses on the geometry of outcrop-scale natural shear zones consisting of different generations of Riedel structures, exposed in the Jurassic Navajo sandstone, Capitol Reef National Park, Utah. Geometric analysis of different structures shows that the spacing of synthetic R-deformation bands increases with the spacing of antithetic R'-deformation bands. Systematic correlation is found between the R-band spacing and the angles formed between R- and R′-bands. Examination of young Riedel structures shows their tendency to localize along narrow, elongated domains sub-parallel to the shear direction and create denser Riedel networks. We suggest that the evolution of Riedel structures is dominated by two mechanisms: (1) discrete faulting in the form of conjugate deformation bands, generally complying with the Mohr-Coulomb criteria, and (2) granular flow, which rotates mainly the R′-deformation bands. Both mechanisms are intensified with progressive strain, decreasing the deformation-band spacing and increasing the R- to R′-angles. The tendency of young Riedel structures to organize in dense elongated networks is related to strain localization during the shear-zone evolution. We suggest a kinematic explanation for the evolution of Riedel-structure networks, which relates the network geometry to the progressive accumulation and localization of shear strain.
机译:Riedel剪切结构是在剪切带内识别的常见断层样式,与断层形成的初期阶段有关。这项研究的重点是露头规模的自然剪切带的几何形状,该剪切带由不同世代的Riedel结构组成,暴露于犹他州国会礁国家公园的侏罗纪纳瓦霍砂岩中。对不同结构的几何分析表明,合成R形变带的间距随对立R'形变带的间距而增加。在R波段间隔与R波段与R'波段之间形成的角度之间存在系统相关性。对年轻的Riedel结构的检查表明,它们倾向于沿着平行于剪切方向的狭窄细长区域进行定位,并形成更密集的Riedel网络。我们认为,Riedel结构的演化受两种机制控制:(1)以共轭形变带的形式出现的离散断层,通常符合Mohr-Coulomb准则;(2)颗粒流,其主要旋转R'-变形带。两种机制都随着渐进应变而增强,从而减小了变形带间距并增加了R-至R'角。年轻的Riedel结构在密集的细长网络中组织的趋势与剪切区演化过程中的应变局部化有关。我们提出了Riedel结构网络演化的运动学解释,它把网络的几何形状与剪切应变的逐步积累和局部化联系起来。

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