粗糙度(岩土工程)
地震学
地质学
诱发地震
断层(地质)
地震破裂
地震力矩
震群
岩土工程
作者
Liuwei Xu,Chen Ji,Lingsen Meng,Jean‐Paul Ampuero,Zhang Yunjun,Saeed Mohanna,Yosuke Aoki
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-08-22
卷期号:385 (6711): 871-876
标识
DOI:10.1126/science.adp0493
摘要
To reveal the connections between the 2024 moment magnitude ( M w ) 7.5 Noto earthquake in Japan and the seismicity swarms that preceded it, we investigated its rupture process through near-source waveform analysis and source imaging techniques, combining seismic and geodetic datasets. We found notable complexity in the initial rupture stages. A strong fault asperity, which remained unbroken in preceding seismic swarms, slowed down the rupture. Then, a second rupture initiated at the opposite edge of the asperity, and the asperity succumbed to double-pincer rupture fronts. The failure of this high-stress drop asperity drove the earthquake into a large-scale event. Our observations help unravel the crucial role of fault asperities in controlling swarm migration and rupture propagation and underscore the need for detailed seismological and interdisciplinary studies to assess seismic risk in swarm-prone regions.
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