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首页> 外文期刊>Journal of the Geological Society >Fracturing and fluid flow in a sub-decollement sandstone; or, a leak in the basement
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Fracturing and fluid flow in a sub-decollement sandstone; or, a leak in the basement

机译:次弯分砂岩中的压裂和流体流动;或地下室漏水

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Crack-seal texture within fracture cements in the Triassic El Alamar Formation, NE Mexico, shows that the fractures opened during precipitation of quartz cements; later, overlapping calcite cements further occluded pore space. Previous workers defined four systematic fracture sets, A (oldest) to D (youngest), with relative timing constrained by crosscutting relationships. Quartz fluid inclusion homogenization temperatures are higher within Set B (148 +/- 20 degrees C) than in Set C (105 +/- 12 degrees C). These data and previous burial history modelling are consistent with Set C forming during exhumation. Fluid inclusions in Set C quartz have higher salinity than those in Set B (22.9 v. 14.2wt% NaCl equivalent, respectively), and Set C quartz cement is more enriched in O-18 (20.2 v. 18.7 parts per thousand VSMOW). Under most assumptions about the true temperature during fracture opening, the burial duration, the amount of cement precipitated and fluid-flow patterns, it appears that the fracture fluid became depleted in O-18 and enriched in C-13. This isotopic evolution, combined with increasing salinity, suggests that throughout fracture opening there was a gravity-driven influx of fluid from upsection Jurassic evaporites, which form a regional decollement. Fracture opening amid downward fluid motion suggests that fracturing was driven by external stresses such as tectonic stretching or unloading, rather than increases in fluid pressure.
机译:墨西哥东北部三叠纪El Alamar组裂缝水泥中的裂缝-密封结构表明,裂缝在石英水泥沉淀过程中打开。之后,重叠的方解石水泥进一步堵塞了孔隙空间。以前的工作人员定义了四个系统性裂缝组,A(最旧)到D(最年轻),相对时间受横切关系限制。 B组(148 +/- 20摄氏度)内的石英流体夹杂物均质温度高于C组(105 +/- 12摄氏度)。这些数据和先前的埋葬历史模型与尸体挖掘过程中的Set C形成一致。组C石英中的流体包裹体比组B中的流体夹杂度更高(分别为22.9 v。14.2wt%NaCl当量),并且组C石英水泥的O-18含量更高(20.2 v。18.7千分VSMOW)。在大多数关于裂缝打开时的真实温度,埋藏持续时间,水泥沉淀量和流体流动模式的假设下,似乎裂缝流体中的O-18贫化了,而C-13富集了。这种同位素演化与盐分的增加相结合,表明在整个裂缝开裂中,重力作用驱使上部侏罗纪蒸发岩的流体涌入,形成了区域性弯折。在向下的流体运动中的裂缝开裂表明,裂缝是由外部应力驱动的,例如构造伸展或卸载,而不是由流体压力的增加引起的。

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