应力障碍对巽他大逆冲构造明打威段未来地震形态的作用

IF 1.3 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Turkish Journal of Earth Sciences Pub Date : 2023-01-01 DOI:10.55730/1300-0985.1847
S. Nalbant, M. N. Bhloscaidh, J. McCloskey, C. Ipek, M. Utkucu
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引用次数: 1

摘要

地震断层上明显的破裂传播障碍的潜在原因似乎强烈地限制了破裂形状和滑动分布,这是正在进行的研究课题。本文认为,地震前的滑动历史造成的断裂段的震前应力阴影是造成这种障碍的一个可能原因。我们将重点放在巽他大逆冲构造的明打威剖面上,因为它在浅水珊瑚中记录了漫长的地震历史,以及在最后一个“地震周期”中事件的详细滑动分布,以及关于地震间耦合分布的现代大地测量信息。我们表明,矩震级(M) 8.7 1797和M = 8.9 1833地震在该剖面上留下的应力阴影一直持续到今天,并且可能成为2007年(M = 8.4和7.9)和2010年(M = 7.8)破裂的障碍,可能导致比其他情况下发生的小得多的地震。
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The Role of Stress Barriers on the Shape of Future Earthquakes in the Mentawai Section of the Sunda Megathrust
: The underlying causes of apparent barriers to rupture propagation on earthquake faults that appear strongly to constrain rupture shape and slip distributions, are the ongoing subject of research. Preseismic stress shadows on the rupturing segment, resulting from the history of slip preceding a great earthquake, are proposed here as one possible cause of such barriers. We focus on the Mentawai section of the Sunda megathrust since it is unique in having its long seismic history recorded in shallow water corals, as well as detailed slip distributions for events in the last “seismic cycle”, and modern geodetic information on the distribution of interseismic coupling. We show that stress shadows left by the moment magnitude (M) 8.7 1797 and M = 8.9 1833 earthquakes on the section persist up to today, and likely acted as barriers to the ruptures in 2007 (M = 8.4 and 7.9) and 2010 (M = 7.8), potentially resulting in much smaller earthquakes than would have occurred otherwise.
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来源期刊
Turkish Journal of Earth Sciences
Turkish Journal of Earth Sciences 地学-地球科学综合
CiteScore
2.40
自引率
10.00%
发文量
6
审稿时长
6 months
期刊介绍: The Turkish Journal of Earth Sciences is published electronically 6 times a year by the Scientific and Technological Research Council of Turkey (TÜBİTAK). It is an international English-language journal for the publication of significant original recent research in a wide spectrum of topics in the earth sciences, such as geology, structural geology, tectonics, sedimentology, geochemistry, geochronology, paleontology, igneous and metamorphic petrology, mineralogy, biostratigraphy, geophysics, geomorphology, paleoecology and oceanography, and mineral deposits. Contribution is open to researchers of all nationalities.
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