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Neogene paleostress changes in the Basin and Range: A case study at Hoover Dam, Nevada-Arizona

机译:盆地和山脉中的新近纪古应力变化:以内华达州亚利桑那州胡佛水坝为例

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摘要

At Hoover Dam, 40 km southeast of Las Vegas, Nevada, well-exposed, highly faulted Miocene rocks provide an excellent opportunity to study the paleostress history of a very small area within a region where previous geologic studies indicate clockwise rotation of paleostress and a nearness to a major strike-slip fault-zone boundary. Within <0.5 km3 of rock, the sense of slip was determined on almost 500 separate faults. The fault-slip data show internal consistency with respect to lithology, size of faults, and location within the small area. With respect to fault slip, however, the data represent an in-homogeneous mixture of primarily strike-slip and dip-slip motions. From this mixture, it is possible to resolve two distinct stress fields with directions of extension that differ by 60°. Each stress field corresponds to a mixture of strike-slip and dip-slip faults, and thus the orientations of 1 and 2 are not tightly constrained. If, however, the data are first separated into strike-slip and dip-slip faulting modes and subsequently searched for sub-populations that correspond to contrasting paleostress orientations, the computations yield tightly constrained tensors that illustrate two distinct stress fields with subhorizontal 3 axes that trend N50°E and N75°W. The 1 and 2 axes permutate in two vertical planes that strike N40°W and N15°E, because 1 and 2 are close in value, relative to 3. These relationships suggest that strike-slip and dip-slip faulting belong to the same tectonic regime. Qualitative observations of polyphase slip, fault-fault offsets, and fault-bedding geometric relationships, when evaluated in the context of changes in 3 orientation and permutations of 1 and 2, provide a basis for a two-stage, late Cenozoic structural evolution at Hoover Dam. These stages are (1) strike-slip faulting (partly pre-tilt) and dip-slip faulting and associated stratal tilting and (2) mostly post-tilt, complexly interrelated strike-slip, oblique-slip, and dip-slip faulting. The qualitative evaluations indicate that strike-slip and dip-slip faulting alternated in time during the second stage of deformation and may have done so during the first. These mixed-mode movements probably represent stress oscillations in time and space rather than discrete stress reorganizations. In contrast, the two different orientations of 3 either represent a major clockwise rotation of the stress field or a major counterclockwise rotation of the rocks during the faulting history. Each alternative is consistent with regional geologic relationships, and the choice of which is correct cannot be made within the small area that was studied.
机译:在内华达州拉斯维加斯东南部40公里处的胡佛大坝上, 高度断层的中新世岩石提供了极好的机会 ,研究该区域内很小区域的古应力历史 以前的地质研究表明古应力顺时针旋转并且靠近主要走滑带的区域。在岩石的<0.5 km 3 范围内,确定了将近500个独立断层的 滑动感。断层滑动 数据显示了与岩性,断层大小 以及小区域内位置有关的内部一致性。但是,关于断层滑动,数据表示主要为走滑运动和倾滑运动的不均匀 混合。从 此混合物中,可以解析出两个延伸方向相差60°的不同应力场。 每个应力场对应一个走滑和 倾角滑动断层的混合体,因此 1 2 的方向不是紧紧地 受约束的。但是,如果首先将数据分离为 到走滑和倾滑滑动断层模式,然后 搜索对应于对比 古应力方向,计算产生紧密约束的 张量,该张量说明了两个不同的应力场,其中水平 3 轴趋势为N50°E和N75°W 。 1 2 在两个垂直平面中排列,这两个垂直平面指向N40°W和N15°E, ,因为< sub> 1 2 的值相对于 3 接近。这些关系 建议走滑和倾滑断层属于同一构造构造类型。 多相滑移,断层错移的定性观测, 和断层几何关系,当在 中进行评估时, 3 方向变化和 < sub> 1 2 为胡佛水坝的两阶段晚期新生代构造 演化提供了基础。这些阶段是(1)走滑断层 (部分为前倾斜)和倾滑滑动断层及相关的stratal 倾斜,以及(2)大部分为后倾斜,复杂的相互关联走滑, 斜滑和倾滑断层。定性评估 表示在变形的第二阶段,走滑和倾滑断层在 时间内交替出现,并且可能在变形过程中做了 so。第一。这些混合模式运动可能表示时间和空间上的 应力振荡,而不是离散的应力 重组。相反, 3 的两个不同方向 表示应力 场的主要顺时针旋转或 up>期间岩石的主要逆时针旋转。 sup> 故障历史。每个备选方案都符合区域 地质关系,并且在所研究的小范围内无法正确选择

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  • 来源
    《GSA Bulletin》 |1985年第3期|347-361|共15页
  • 作者单位

    Tectonique Quantitative, Départment de Géotectonique, Université Pierre-et-Marie Curie, F-75230 Paris, France;

    Institut Francais Pétrole, 92506 Rueil Malmaison, France;

    U.S. Geological Survey, Denver, Colorado 80225;

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