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Accommodation slip inversion and fault segmentation in a province-scale shear zone from high-resolution densely spaced wide-aperture seismic profiling Centennial Valley MT USA

机译:美国密西西比州百年谷地区高分辨率高分辨率密集分布的宽孔径地震剖面的省级剪切带中的住宿滑移反演和断层分割

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摘要

We acquired a ~9-km long, high-resolution reflection seismic profile in the Centennial Valley, Montana, to better understand the kinematics of basin bounding faults and their role in accommodating proposed right-lateral shear in the Northern Basin and Range adjacent to the Yellowstone hotspot. In pursuing these goals, our findings have also shed light on the development of hanging wall stratigraphy and seismic hazards for this part of the SW Montana seismic belt. Here we present the profile and a working interpretation that identifies fault inversion, and an oblique, anticlinal accommodation zone linking the Centennial and Lima Reservoir faults in the Centennial Valley. These interpretations are consistent with seismicity and GPS-geodetically observed right-lateral shear aligned with the Centennial Valley north of the Yellowstone hotspot. Data were acquired using dense, wide-aperture arrays and illuminate the subsurface stratigraphy and faults down to ~1200 m, showing that the basin is a half-graben with a southern depocenter driven by the listric geometry of the north-dipping Centennial fault. Reflectors onlap basement highs with growth geometry against these faults. Our interpretation of a bright basal reflection as the Timber Hill Basalt (~6 Ma) or related flow, is consistent with a late Miocene – Pliocene inception of the basin proposed by other research. We also note a small inversion structure that we interpret as local evidence of transpression in the shear zone. This transpression is part of the accommodation zone and seismogenic faults including the Lima Reservoir fault that has well-expressed Holocene surface ruptures a few kilometres west of the seismic line along the northern edge of the Centennial basin.
机译:为了更好地了解盆地边界断层的运动学及其在适应北部盆地和与之相邻的山脉的右侧切变中的作用,我们在蒙大拿州百年谷地区获得了〜9 km长的高分辨率反射地震剖面。黄石热点。为了实现这些目标,我们的发现也为西南蒙大拿州地震带的这一部分的悬墙地层学和地震灾害的发展提供了启示。在这里,我们介绍了断层反转的剖面和工作解释,以及一个连接百年谷地百年和利马水库断层的倾斜,斜斜的适应带。这些解释与地震活动和GPS大地测量的右切变一致,与黄石热点以北的百年谷一致。数据是使用密集的大孔径阵列获取的,并照亮了约1200μm的地下地层和断层,表明该盆地是一个半盆状盆地,南部沉积中心受北倾百年断层的利斯特几何学驱动。反射器重叠在地下室的高处,并具有克服这些断层的生长几何形状。我们将明亮的基底反射解释为Timber Hill玄武岩(〜6)Ma)或相关流动,这与其他研究提出的中新世晚期至上新世盆地形成一致。我们还注意到一个小的反演结构,我们将其解释为剪切带中超压的局部证据。该压变是调节带的一部分,而地震活动断层包括利马水库断层,该断层已充分表达全新世地表,沿百年盆地北缘在地震线以西数公里处破裂。

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