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首页> 外文期刊>Journal of the Geological Society >Laurentian palaeostress trajectories and ephemeral fracture permeability, Cambrian Eriboll Formation sandstones west of the Moine Thrust Zone, NW Scotland
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Laurentian palaeostress trajectories and ephemeral fracture permeability, Cambrian Eriboll Formation sandstones west of the Moine Thrust Zone, NW Scotland

机译:苏格兰西北穆恩推力区以西的寒武系埃里伯尔组砂岩的劳伦式古应力轨迹和短暂裂缝渗透性

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摘要

Cambrian Eriboll Formation sandstones of the Ardvreck Group that crop out west of the Moine Thrust Zone contain joints and quartz-filled or quartz-lined fractures that resemble cemented joints. Of the fractures containing quartz, five sets strike north, NW to WNW, NE, west and north; according to crosscutting relations this is a progression from the oldest to the youngest set. Sets include opening-mode microfractures, partly visible in transmitted light as fluid-inclusion planes and sharply defined as microveins using SEM-based cathodoluminescence (CL). Dating the oldest north-striking set, using inferred quartz accumulation rates, fluid inclusions and burial history, suggests that these fractures mark a Palaeozoic east–west least horizontal stress trajectory in Laurentia. The youngest two sets of porous fractures are associated with faults that cut and postdate the Moine Thrust Zone. Data indicate that at depth in basins, pervasive fracture systems arising from discrete loading events are ephemeral owing to fracture porosity destruction by cementation.
机译:在Moine冲断带以西种植的Ardvreck组的寒武系Eriboll组砂岩 含有节理和 石英或石英衬里的裂缝,类似于胶结的 关节。在含石英的裂缝中,有5组在 北,西北至西,北,西北,西北走向。根据crosscutting 的关系,这是从最早的集到最小的 集的过程。集合包括开放模式的微裂缝,在透射光中部分可见的 作为流体包含平面,并使用基于SEM的阴极发光(CL)清晰地定义为 作为微静脉。根据推测的石英堆积速率,流体包裹体和埋藏历史,约会最古老的北向集合的年代表明这些 断裂标志着古生代东部– Laurentia的最小西部水平应力轨迹。两组最年轻的多孔 裂缝与剪切并延后 Moine冲断带的断层有关。数据表明,在盆地深处,由于胶结作用破坏了裂缝的孔隙度,离散加载事件引起的普遍的 断裂系统是短暂的。

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  • 来源
    《Journal of the Geological Society》 |2009年第2期|349-362|共14页
  • 作者单位

    Bureau of Economic Geology, Jackson School of Geosciences, University of Texas at Austin, Austin, TX 78713, USA;

    Bureau of Economic Geology, Jackson School of Geosciences, University of Texas at Austin, Austin, TX 78713, USA;

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