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超越震级变化,以作为地震动态触发的唯一指标。

Going Beyond Rate Changes as the Sole Indicator for Dynamic Triggering of Earthquakes.

机构信息

Department of Geology and Geophysics, University of Utah, Salt Lake City, UT, USA.

Scripps Institution of Oceanography, Univ. of California San Diego, La Jolla, CA, USA.

出版信息

Sci Rep. 2020 Mar 5;10(1):4120. doi: 10.1038/s41598-020-60988-2.

Abstract

Remote earthquake triggering is a well-established phenomenon. Triggering is commonly identified from statistically significant increases in earthquake rate coincident with the passage of seismic energy. In establishing rate changes, short duration earthquake catalogs are commonly used, and triggered sequences are not typically analyzed within the context of background seismic activity. Using 500 mainshocks and four western USA 33-yearlong earthquake catalogs, we compare the ability of three different statistical methods to identify remote earthquake triggering. Counter to many prior studies, we find remote dynamic triggering is rare (conservatively, <2% of the time). For the mainshocks associated with remote rate increases, the spatial and temporal signatures of triggering differ. We find that a rate increase coincident in time with mainshock energy alone is insufficient to conclude that dynamic triggering occurred. To classify dynamically triggered sequences, we suggest moving away from strict statistical measurements and instead use a compatibility assessment that includes multiple factors, like spatial and temporal indicators.

摘要

远程地震触发是一个成熟的现象。触发通常是通过与地震能量传播同时发生的地震发生率的统计显著增加来识别的。在确定速率变化时,通常使用短持续时间的地震目录,并且触发序列通常不在背景地震活动的背景下进行分析。使用 500 次主震和四个美国西部 33 年的地震目录,我们比较了三种不同统计方法识别远程地震触发的能力。与许多先前的研究相反,我们发现远程动态触发很少见(保守地说,不到 2%的时间)。对于与远程速率增加相关的主震,触发的时空特征不同。我们发现,仅与主震能量同时发生的速率增加不足以得出发生了动态触发的结论。为了对动态触发序列进行分类,我们建议不再使用严格的统计测量方法,而是使用包括多个因素(如时空指标)的兼容性评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dd8/7058025/d6e58b5f58e8/41598_2020_60988_Fig1_HTML.jpg

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