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首页> 外文期刊>Journal of the Geological Society >Chaotic breccia along the Dent Fault, NW England: implosion or collapse of a fault void?
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Chaotic breccia along the Dent Fault, NW England: implosion or collapse of a fault void?

机译:英格兰西北部邓特断层的混乱角砾岩:断层空隙的内爆或坍塌?

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摘要

A body of chaotic breccia along the reverse-oblique Dent Fault zone is ascribed to hanging-wall collapse into persistent voids created by geometric mismatch of fault walls, although some implosion into transient voids is a possibility. The breccia comprises a 20 m wide body of hanging-wall lithologies, with a chaotic clast-supported fabric that contrasts with the fitted-fabric breccias typical of the Dent Fault damage zone. The breccia body has crude bedding defined by clast shape and size contrasts. The void fill is cut by Variscan fault strands, which, together with its ferroan calcite and barite cement, prove its late Carboniferous rather than recent age. It is shown that any fault void, transient or persistent, had a smaller aperture than the final width of the breccia body, and no more than 5 m; a span that can be supported to depths of 2 or 3 km. However, cement zonation in the breccia fill suggests that the void opened in multiple increments, each of an aperture compatible with the maximum displacement in any one event along the Dent Fault. The Dent Fault example highlights the possible general importance of fault-void collapse but also the problems in distinguishing it from implosion processes.
机译:沿斜斜凹断层 区域形成的混乱角砾岩被归因于断层壁几何失配所造成的壁挂塌陷到永久性空隙 ,尽管有些 内爆成为可能。角砾岩 包括一个20 m宽的悬挂壁岩性体,其中 一种混乱的碎屑支撑织物,与适合的织物 角砾岩形成对比凹痕故障损坏区域的典型特征。角砾岩 体具有粗糙的层理,由层状形状和大小对比定义。铁方解石和重晶石水泥,证明其晚石炭世而不是近代。结果表明,任何断层孔隙(瞬变 或持续性)的孔径小于角砾岩体的最终宽度,且不超过5 m。 可以支持的深度范围为2或3 km。但是,角砾岩 填充物中的水泥带化表明,空隙以多个增量打开,每个 的孔径与任何 中的最大位移兼容凹痕故障事件。凹痕故障示例突出了 可能的无缺陷坍塌的一般重要性,还突出了 将其与内爆过程区分开的问题。

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  • 来源
    《Journal of the Geological Society》 |2006年第3期|431-446|共16页
  • 作者单位

    Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK (e-mail: nhw1@esc.cam.ac.uk);

    Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK (e-mail: nhw1@esc.cam.ac.uk);

    Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK (e-mail: nhw1@esc.cam.ac.uk);

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