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首页> 外文期刊>Marine and Petroleum Geology >Origin of the saline paleofluids in fault-damage zones of the Jabal Qusaybah Anticline (Adam Foothills, Oman): Constraints from fluid inclusions geochemistry
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Origin of the saline paleofluids in fault-damage zones of the Jabal Qusaybah Anticline (Adam Foothills, Oman): Constraints from fluid inclusions geochemistry

机译:jabal Qusaybah背斜线故障伤害区盐水古流体的起源(亚当山麓,阿曼):流体夹杂物地球化学的约束

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摘要

The Jabal Qusaybah Anticline, in north Oman, is affected by syn-folding strike-slip and extensional fault zones developed during foreland deformation ahead of the Northern Oman Mountains thrust wedge, in Cenozoic times. Migration of fluids in fault-damage zones is recorded in complex calcite vein networks. By employing the microthermometric and compositional microanalysis of the fluid inclusions (crush leach), two distinct generations of veins have been studied. The aim was to determine the source of elevated salinity in fluids involved in their cementation and explain their compositional evolution through fluid-rock interactions. The ionic ratios (Na/Br and Cl/Br) obtained from crush-leach analysis give supporting evidence that the elevated salinity of fluid inclusions in both vein groups originated from an evaporated seawater beyond the onset of halite precipitation (residual brines). The results reveal a gradual increase in salinity of the fluids, NCI molar ratios, as well as Li/C1 molar ratios. These results imply the progressively increasing contribution of evaporitic residual brines and fluids that interacted with, or were derived from siliciclastic rocks. We suggest that the most likely origin of the former fluids is provided by residual brines associated with precipitation of the Ara evaporites (Cambrian). The regional driving mechanism for such a significant fluid migration is believed to be compaction-driven upward flow that was channeled into faults and fractures during major deformational events. (C) 2017 Elsevier Ltd. All rights reserved.
机译:jabal qusaybah antinline,位于北阿曼,受到在北方阿曼山推力楔之前的前陆变形期间开发的同步折叠防滑和扩展断层区的影响。在复杂的方解石网络中记录了故障损坏区域中的液体迁移。通过使用流体夹杂物(压碎浸出)的微米和组成微基分析,已经研究了两个不同的一代静脉。目的是确定伴随其胶结中涉及的液体升高的源泉,并通过流体岩相互作用解释它们的组成演变。由粉碎 - 浸出分析中获得的离子比率(Na / Br和Cl / Br)给出了支持的证据表明,静脉基团中的流体夹杂物的盐度升高来自蒸发的海水,超出盐沉淀的发作(残留盐水)。结果揭示了流体的盐度,NCI摩尔比以及Li / C1摩尔比的逐渐增加。这些结果意味着渐进式越来越多的蒸发残留盐水和与硅砾岩体衍生的流体的贡献。我们建议前流体的最可能起源由与ARA蒸发器(Cambrian)的沉淀相关的残留盐水提供。认为这种显着的流体迁移的区域驱动机制是压实驱动的向上流动,其在主要变形事件期间被引入故障和骨折。 (c)2017 Elsevier Ltd.保留所有权利。

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