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Detecting remotely triggered temporal changes around the Parkfield section of the San Andreas fault

机译:在圣安地列斯断层的帕克菲尔德断层附近检测到远程触发的时间变化

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Abstract Detecting temporal changes in fault zone properties at seismogenic depth have been a long-sought goal in the seismological community for many decades. Recent studies based on waveform analysis of repeating earthquakes have found clear temporal changes in the shallow crust and around active fault zones associated with the occurrences of large nearby and teleseismic earthquakes. However, repeating earthquakes only occur in certain locations and their occurrence times cannot be controlled, which may result in inadequate sampling of the interested regions or time periods. Recent developments in passive imaging via auto- and cross-correlation of ambient seismic wavefields (e.g., seismic noise, earthquake coda waves) provide an ideal source for continuous monitoring of temporal changes around active fault zones. Here we conduct a systematic search of temporal changes along the Parkfield section of the San Andreas fault by cross-correlating relatively high-frequency (0.4–1.3 Hz) ambient noise signals recorded by 10 borehole stations in the High Resolution Seismic Network. After using stretch/compressed method to measure the delay time and the decorrelation-index between the daily noise cross-correlation functions (NCCFs), we find clear temporal changes in the median seismic velocity and decorrelation-index associated with the 2004 M 6.0 Parkfield earthquake. We also apply the same procedure to the seismic data around five regional/teleseismic events that have triggered non-volcanic tremor in the same region, but failed to find any clear temporal changes in the daily NCCFs. The fact that our current technique can detect temporal changes from the nearby but not regional and teleseismic events, suggests that temporal changes associated with distance sources are very subtle or localized so that they could not be detected within the resolution of the current technique (~0.2%).
机译:摘要探测地震断层带的时空变化是地震学界一个长期以来追求的目标。基于重复地震波形分析的最新研究发现,在浅地壳和活动断层带周围明显的时间变化与附近大地震和远震地震的发生有关。但是,重复地震仅发生在某些位置,并且无法控制其发生时间,这可能会导致对感兴趣区域或时间段的采样不足。通过环境地震波场(例如地震噪声,地震尾波)的自相关和互相关来进行被动成像的最新进展为连续监测活动断层带周围的时间变化提供了理想的来源。在这里,我们通过对高分辨率地震网络中10个钻孔台站记录的相对高频(0.4–1.3 Hz)环境噪声信号进行互相关,对圣安德烈亚斯断层Parkfield断面的时间变化进行系统的搜索。在使用拉伸/压缩方法来测量延迟时间和每日噪声互相关函数(NCCF)之间的去相关指数后,我们发现与2004 M 6.0帕克菲尔德地震相关的中值地震速度和去相关指数的时间变化明显。我们还对围绕同一地区触发了非火山震颤的五个区域/地震事件的地震数据应用了相同的程序,但是未能在每日NCCF中发现任何明显的时间变化。我们当前的技术可以检测到附近事件的时间变化,但不能检测区域和远程地震事件,这一事实表明与距离源相关的时间变化非常微妙或局限,因此无法在当前技术的分辨率范围内检测到(〜0.2 %)。

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