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首页> 外文期刊>Bulletin of the Seismological Society of America >Plate Boundary Adjustments of the Southernmost Queen Charlotte Fault
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Plate Boundary Adjustments of the Southernmost Queen Charlotte Fault

机译:最南端的夏洛特皇后断层的板块边界调整

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摘要

A revision of the plate boundary configuration offshore southern Haida Gwaii, which is the locus of the 2012 M-w 7.8 thrust earthquake, is based on a reevaluation of regional geophysical data and leads to recognition of fault segments critical for seismic-hazard analysis. Off western Canada, the strike-slip Queen Charlotte fault (QCF) and Revere-Dellwood fault (RDF) constitute the transpressive plate boundary between the Pacific and North American plates. The southernmost 80 km of the QCF strikes at the highest angle (similar to 20 degrees) to the relative plate motion, yet geomorphology adjacent to the fault is the most subdued. Synthesizing geomorphology, seismicity, sidescan sonar, gravity, and seismic reflection profiles indicates that the plate boundary is evolving to a less transpressive configuration than previously interpreted. The RDF is 100 km longer than previously mapped; it has propagated northward and overlaps the QCF by 120 km. Propagation is defined by strike-slip earthquakes 3: 9 < M-w < 6.4, 500 m uplift of oceanic crust, and a fault scarp that disrupts margin parallel structures of the Queen Charlotte terrace. Part of the southern QCF has been reoriented through a series of short restraining steps, resulting in a less oblique orientation relative to the plate motions; the recent fault trace is clearly seen in previously uninterpreted sidescan sonar data. Overall this mapping delineates a segment of the plate boundary characterized by overlap between the QCF and RDF and defines the southern limit of a segment of the plate boundary characterized by historic pure shear deformation and rupture during the 2012 M-w 7.8 and the 1949 M 8.1 earthquakes.
机译:基于对区域地球物理数据的重新评估,对海达瓜南海岸南部的板块边界构造进行了修订,这是2012年M-w 7.8逆冲地震的源头,可以识别对地震危险性分析至关重要的断层。在加拿大西部以外,走滑女王夏洛特断裂(QCF)和里维尔-戴尔伍德断裂(RDF)构成了太平洋板块与北美板块之间的超压板块边界。 QCF最南端的80 km以相对板块运动的最大角度(近似20度)走向,但与断层相邻的地貌最弱。综合地貌,地震活动性,侧扫声纳,重力和地震反射剖面表明,板块边界正在演变成比以前解释的少的超压构造。 RDF比以前映射的要长100公里;它向北传播,与QCF重叠了120 km。传播的定义为走滑地震3:9

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