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Earthquake slip surfaces identified by biomarker thermal maturity within the 2011 Tohoku-Oki earthquake fault zone

机译:2011年Tohoku-Oki地震断层区内的生物标志物热成熟地震滑动表面

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Extreme slip at shallow depths on subduction zone faults is a primary contributor to tsunami generation by earthquakes. Improving earthquake and tsunami risk assessment requires understanding the material and structural conditions that favor earthquake propagation to the trench. We use new biomarker thermal maturity indicators to identify seismic faults in drill core recovered from the Japan Trench subduction zone, which hosted 50?m of shallow slip during the Msubw/sub9.1 2011 Tohoku-Oki earthquake. Our results show that multiple faults have hosted earthquakes with displacement ≥?10?m, and each could have hosted many great earthquakes, illustrating an extensive history of great earthquake seismicity that caused large shallow slip. We find that lithologic contrasts in frictional properties do not necessarily determine the likelihood of large shallow slip or seismic hazard.
机译:俯冲区域故障浅景深的极端滑动是地震的主要贡献者。改善地震和海啸风险评估需要了解有利于对沟渠进行地震传播的材料和结构条件。我们使用新的生物标志物热成熟度指示器来识别从日本沟槽俯冲区回收的钻芯中的地震缺陷,该沟槽俯冲区追随50?m在M w 9.1 2011年Tohoku-oki地震期间的浅滑槽。我们的研究结果表明,多个断层呈现出位移≥10?10的地震,每个都可以举办许多大地震,说明了造成大浅层滑动的大地震地震史的广泛历史。我们发现摩擦性质中的岩性对比不一定决定大浅层或地震危害的可能性。

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