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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Fossil seep structures of the Monterey Bay region and tectonic/structural controls on fluid flow in an active transform margin
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Fossil seep structures of the Monterey Bay region and tectonic/structural controls on fluid flow in an active transform margin

机译:蒙特利湾地区的化石渗流结构以及活动转换带中流体流动的构造/结构控制

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The subsurface plumbing system of ancient seeps of hydrocarbon-rich gases and fluids is partially preserved by seep deposits in Miocene rocks of the Coast Ranges and on the seafloor of the Monterey Bay region in central California. The fossil seep-related deposits are of two types: authigenic carbonates and intrusions of oil-saturated sandstones. Both types occur in fractured and faulted siliceous mudstone and porcelanite layers of the organic-rich Miocene Santa Cruz Mudstone. They are associated with tectonic structures indicating deformation, and are located in the proximity of faults. The morphology of the seep carbonates is characterized by strong asymmetries and by holes, pipes and other types of fluid conduits with orientations parallel to the directions of the local fracture- and fault-sets, thus suggesting structural control over pathways of fluid migration. The dominant direction of the conduits in the seep carbonates and of the intrusive dikes (northeast-southwest) differs from the dominant orientation of the tectonic structures of the San Andreas Fault System (northwest-southeast). Previous interpretations of these ancient seep-related deposits suggested that lateral changes of the thickness of the Cenozoic marine host sediments favored fluid migration from basin depocenters located offshore toward basin margins. Different driving forces for fluids have been hypothesized including hydrocarbon generation, differential compaction, and tectonic compression. Most of the fossil seeps are located on structural highs of the basement and adjacent to offshore basins that form elongated depressions oriented northwest-southeast. Previously unidentified structures that offset the basement along northeast-southwest trends (cross-setting faults) paralleling the orientations of the conduits of the seep carbonates and the dikes of oil-saturated sandstones were also recognized. Tectonic deformation, block rotations (documented by local clockwise rotations of paleomagnetic directions in the Coastal Ranges) and cross-faults were probably produced during the Late Miocene and Pliocene to accommodate the shear stress between conjugate faults during eastward shifting of the activity of the San Andreas Fault System. Comparison with previous studies on ancient seep deposits, regional geology and offshore tectonic data, suggest that the fluids that sourced the seeps were driven by episodes of inverse tectonics, during which previously extensional depositional basins were involved in episodes of tectonic compression. Tectonic deformation created cross-faults in rotated blocks, which could have acted as important conduits for the flow of hydrocarbon-rich fluids and gases and fostered the injection of liquefied sands. (c) 2005 Elsevier B.V. All rights reserved.
机译:古老的富含烃类气体和流体的渗漏的地下管道系统被海岸山脉中新世岩石和加利福尼亚州中部蒙特利湾地区海底的渗漏沉积物部分保留。与化石渗透有关的矿床有两种类型:自生的碳酸盐岩和油饱和砂岩的侵入岩。两种类型都发生在富含有机质的中新世圣克鲁斯泥岩的断裂和断裂的硅质泥岩和斑岩岩层中。它们与指示变形的构造结构相关联,并且位于断层附近。渗透碳酸盐的形态特征是强烈的不对称性,以及具有平行于局部裂缝和断层的方向的方向的孔,管道和其他类型的流体导管,因此建议对流体运移路径进行结构控制。碳酸盐岩渗流管道和侵入性堤防(东北-西南)的管道主方向与圣安德烈亚斯断层系统(西北-东南)的构造结构的主方向不同。对这些古代与渗流有关的沉积物的先前解释表明,新生代海洋宿主沉积物厚度的侧向变化有利于流体从近海盆地沉积中心向盆地边缘的迁移。假设流体的不同驱动力包括碳氢化合物生成,压实压实和构造压缩。大多数化石渗漏位于地下室的结构性高处,并与海上盆地相邻,后者形成了西北向东南的细长凹陷。先前还发现了一些未知的结构,这些结构沿平行于渗碳碳酸盐岩导管和含油砂岩堤防方向的东西-西南走向(跨断层断裂)偏移了基底。在中新世和上新世末期可能产生了构造变形,块体旋转(由沿海地区古地磁方向的局部顺时针旋转记录)和交叉断层,以适应圣安德烈亚斯活动的东移过程中共轭断层之间的剪切应力。故障系统。与先前对古代渗流沉积物,区域地质学和近海构造数据的研究相比较,表明源于渗流的流体是由逆构造事件驱动的,在此期间先前伸展的沉积盆地参与了构造压缩的事件。构造变形在旋转的块体中形成了断层,这可能是富烃流体和气体流动的重要管道,并促进了液化砂的注入。 (c)2005 Elsevier B.V.保留所有权利。

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