首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Detection of earthquake swarms at subduction zones globally: Insights into tectonic controls on swarm activity
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Detection of earthquake swarms at subduction zones globally: Insights into tectonic controls on swarm activity

机译:在全球范围内检测俯冲区的地震群:对群活动的构造控制洞察力

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摘要

Earthquake swarms are characterized by an increase in seismicity rate that lacks a distinguished main shock and does not obey Omori's law. At subduction zones, they are thought to be related to slow-slip events (SSEs) on the plate interface. Earthquake swarms in subduction zones can therefore be used as potential indicators of slow-slip events. However, the global distribution of earthquake swarms at subduction zones remains unclear. Here we present a method for detecting such earthquake sequences using the space-time epidemic-type aftershock-sequence model. We applied this method to seismicity (M >= 4.5) recorded in the Advanced National Seismic System catalog at subduction zones during the period of 1995-2009. We detected 453 swarms, which is about 6.7 times the number observed in a previous catalog. Foreshocks of some large earthquakes are also detected as earthquake swarms. In some subduction zones, such as at Ibaraki-Oki, Japan, swarm-like foreshocks and ordinary swarms repeatedly occur at the same location. Given that both foreshocks and swarms are related to SSEs on the plate interface, these regions may have experienced recurring SSEs. We then compare the swarm activity and tectonic properties of subduction zones, finding that swarm activity is positively correlated with curvature of the incoming plate before subduction. This result implies that swarm activity is controlled either by hydration of the incoming plate or by heterogeneity on the plate interface due to fracturing related to slab bending.
机译:地震群体的特点是增加缺乏杰出的主要震撼的地震率,并没有遵守omori的法律。在俯冲区域,他们被认为与板界面上的慢速事件(SSE)相关。因此,俯冲区域的地震群体可用作慢滑事件的潜在指标。但是,俯冲区的地震群的全球分布仍然不清楚。在这里,我们介绍了一种使用时空流行型余震序列模型检测这种地震序列的方法。在1995 - 2009年期间,我们将这种方法应用于在高级国家地震系统目录中记录的地震性(M> = 4.5)。我们检测到453个群体,这是在上一个目录中观察到的数字约6.7倍。某些大地震的前铲也被检测为地震群。在一些俯卧区,例如在IBARAKI-OKI,日本,类似的牧草和普通群反复发生在同一位置。鉴于这两个地区都与板界面上的SSE相关,这些区域可能具有经验丰富的经历过的SSE。然后,我们比较俯冲区域的群体活动和构造性质,发现群体活动与俯冲前的进料板的曲率正相关。该结果意味着由于与平板弯曲有关的压裂,通过输入板的水合或通过板界面的异质性来控制群。

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