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Imaging widespread seismicity at midlower crustal depths beneath Long Beach, CA, with a dense seismic array: Evidence for a depth-dependent earthquake size distribution

机译:利用密集的地震阵列,在加利福尼亚州长滩以下的中低地壳深度成像广泛的地震活动:依赖于深度的地震规模分布的证据

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摘要

We use a dense seismic array composed of 5200 vertical geophones to monitor microseismicity in Long Beach, California. Poor signal-to-noise ratio due to anthropogenic activity is mitigated via downward-continuation of the recorded wavefield. The downward-continued data are continuously back projected to search for coherent arrivals from sources beneath the array, which reveals numerous, previously undetected events. The spatial distribution of seismicity is uncorrelated with the mapped fault traces, or with activity in the nearby oil-fields. Many events are located at depths larger than 20 km, well below the commonly accepted seismogenic depth for that area. The seismicity exhibits temporal clustering consistent with Omori's law, and its size distribution obeys the Gutenberg-Richter relation above 20 km but falls off exponentially at larger depths. The dense array allows detection of earthquakes two magnitude units smaller than the permanent seismic network in the area. Because the event size distribution above 20 km depth obeys a power law whose exponent is near one, this improvement yields a hundred-fold decrease in the time needed for effective characterization of seismicity in Long Beach.
机译:我们使用由5200台垂直地震检波器组成的密集地震阵列来监测加利福尼亚州长滩的微地震。通过记录波场的向下连续,可以减轻由于人为活动引起的信噪比差。对向下连续的数据进行连续反向投影,以从阵列下方的源中搜索相干到达,这揭示了许多以前未检测到的事件。地震活动性的空间分布与测绘的断层迹线或附近油田的活动无关。许多事件位于大于20 km的深度,远低于该地区公认的地震发生深度。地震活动性表现出符合大森定律的时间聚类,其大小分布在20 km以上服从古腾堡-里希特关系,但在较大深度处呈指数下降。密集阵列可以检测到比该地区的永久地震网络小两个震级的地震。因为20 km深度以上的事件大小分布遵循指数接近1的幂定律,所以这种改进导致有效表征长滩地震活动所需的时间减少了100倍。

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