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美国蒙大拿州森特尼尔谷高分辨率、密集宽孔径地震剖面揭示的省级剪切带中的构造变形、滑动反转及断层分段

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.

作者信息

Bruno Pier Paolo G, Berti Claudio, Pazzaglia Frank J

机构信息

Khalifa University, Department of Earth Sciences, P.O. Box 127788, Abu Dhabi, UAE.

Lehigh University, Department of Earth and Environmental Science, 18015, Bethlehem, PA, USA.

出版信息

Sci Rep. 2019 Jun 25;9(1):9214. doi: 10.1038/s41598-019-45497-1.

Abstract

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.

摘要

我们在蒙大拿州的百年谷采集了一条约9公里长的高分辨率反射地震剖面,以更好地了解盆地边界断层的运动学及其在容纳黄石热点附近北盆地和山脉中假定的右旋剪切作用中所起的作用。在追求这些目标的过程中,我们的发现也为蒙大拿州西南部地震带这一区域的上盘地层发育和地震灾害提供了线索。在此,我们展示该剖面以及一个初步解释,该解释识别出了断层反转,以及一个连接百年谷中百年断层和利马水库断层的斜交背斜调节带。这些解释与地震活动以及GPS大地测量观测到的与黄石热点以北的百年谷对齐的右旋剪切相一致。数据是使用密集的宽孔径阵列采集的,照亮了地下约1200米深处的地层和断层,表明该盆地是一个半地堑,其南部沉积中心由向北倾斜的百年断层的铲状几何形态驱动。反射层以生长几何形态超覆这些断层上的基底高地。我们将一个明亮的基底反射解释为木材山玄武岩(约6百万年)或相关熔岩流,这与其他研究提出的该盆地始于晚中新世 - 上新世的观点一致。我们还注意到一个小的反转构造,我们将其解释为剪切带中横向挤压的局部证据。这种横向挤压是调节带和发震断层的一部分,包括利马水库断层,该断层在沿着百年盆地北缘的地震线以西几公里处有表现良好的全新世地表破裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9634/6593102/040bd22a27d9/41598_2019_45497_Fig1_HTML.jpg

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