地震学
大地基准
地质学
力矩震级标度
地震灾害
地震破裂
打滑(空气动力学)
运动学
应力场
断层(地质)
北安纳托利亚断层
大地测量学
物理
工程类
几何学
结构工程
航空航天工程
数学
经典力学
有限元法
缩放比例
作者
Zhe Jia,Zeyu Jin,Mathilde Marchandon,Thomas Ulrich,Alice‐Agnes Gabriel,Wenyuan Fan,Peter M. Shearer,Xiaoyu Zou,John Rekoske,Fatih Bulut,Aslı Garagon,Yuri Fialko
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-08-03
卷期号:381 (6661): 985-990
被引量:87
标识
DOI:10.1126/science.adi0685
摘要
The destructive 2023 moment magnitude (Mw) 7.8-7.7 earthquake doublet ruptured multiple segments of the East Anatolian Fault system in Turkey. We integrated multiscale seismic and space-geodetic observations with multifault kinematic inversions and dynamic rupture modeling to unravel the events' complex rupture history and stress-mediated fault interactions. Our analysis reveals three subshear slip episodes during the initial Mw 7.8 earthquake with a delayed rupture initiation to the southwest. The Mw 7.7 event occurred 9 hours later with a larger slip and supershear rupture on its western branch. Mechanically consistent dynamic models accounting for fault interactions can explain the unexpected rupture paths and require a heterogeneous background stress. Our results highlight the importance of combining near- and far-field observations with data-driven and physics-based models for seismic hazard assessment.
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