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首页> 外文期刊>Journal of Seismology >3D crustal structure and long-period ground motions from a M9.0 megathrust earthquake in the Pacific Northwest region
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3D crustal structure and long-period ground motions from a M9.0 megathrust earthquake in the Pacific Northwest region

机译:西北太平洋地区M9.0级大推力地震的3D地壳结构和长周期地震动

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摘要

We have developed a community velocity model for the Pacific Northwest region from northern California to southern Canada and carried out the first 3D simulation of a Mw 9.0 megathrust earthquake rupturing along the Cascadia subduction zone using a parallel supercomputer. A long-period (<0.5 Hz) source model was designed by mapping the inversion results for the December 26, 2004 Sumatra–Andaman earthquake (Han et al., Science 313(5787):658–662, 2006) onto the Cascadia subduction zone. Representative peak ground velocities for the metropolitan centers of the region include 42 cm/s in the Seattle area and 8–20 cm/s in the Tacoma, Olympia, Vancouver, and Portland areas. Combined with an extended duration of the shaking up to 5 min, these long-period ground motions may inflict significant damage on the built environment, in particular on the highrises in downtown Seattle.
机译:我们开发了一个从加利福尼亚北部到加拿大南部的太平洋西北地区的社区速度模型,并使用并行超级计算机对卡斯卡迪亚俯冲带发生的9.0级兆瓦推力地震进行了首次3D模拟。通过将2004年12月26日苏门答腊-安达曼地震(Han等,Science 313(5787):658-662,2006)的反演结果映射到卡斯卡迪亚俯冲上,设计了一个长周期(<0.5 Hz)源模型。区。该地区大都市中心的典型峰值地速包括西雅图地区的42 cm / s和塔科马,奥林匹亚,温哥华和波特兰地区的8-20 cm / s。这些长时间的地面震动加之最长5分钟的摇晃时间,可能会对建筑环境,特别是西雅图市中心的高层建筑造成重大破坏。

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