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首页> 外文期刊>Pure and Applied Geophysics >Methods for measuring seismicity rate changes: A review and a study of how the M-w 7.3 Landers earthquake affected the aftershock sequence of the M-w 6.1 Joshua Tree earthquake
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Methods for measuring seismicity rate changes: A review and a study of how the M-w 7.3 Landers earthquake affected the aftershock sequence of the M-w 6.1 Joshua Tree earthquake

机译:衡量地震发生率变化的方法:7.3级Landers地震如何影响约书亚树6.1级地震的余震序列的回顾和研究

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The development of fault interaction models has triggered the need for an accurate estimation of seismicity rate changes following the occurrence of an earthquake. Several statistical methods have been developed in the past to serve this purpose, each relying on different assumptions (e.g., stationarity, gaussianity) pertaining to the seismicity process. In this paper we review these various approaches, discuss their limitations, and propose further improvements. The feasibility of mapping robust seismicity rate changes, and more particularly rate decreases (i.e., seismicity shadows), in the first few days of an aftershock sequence, is examined. To this aim, the hypothesis of large numbers of earthquakes, hence the use of Gaussian statistics, as is usually assumed, must be dropped. Finally, we analyse the modulation in seismicity rates following the 1992, June 28 M-w 7.3 Landers earthquake in the region of the 1992, April 22 M-w 6.1 Joshua Tree earthquake. Clear instances of early triggering (i.e., in the first few days) followed by a seismicity quiescence, are observed. This could indicate the existence of two distinct interaction regimes, a first one caused by the destabilisation of active faults by the travelling seismic waves, and a second one due to the remaining static stress perturbation.
机译:断层相互作用模型的发展引发了对地震发生后地震率变化的准确估计的需求。过去已经开发了几种统计方法来实现该目的,每种方法都依赖于与地震活动过程有关的不同假设(例如,平稳性,高斯性)。在本文中,我们回顾了这些不同的方法,讨论了它们的局限性,并提出了进一步的改进方案。研究了在余震序列的前几天绘制鲁棒的地震活动率变化,尤其是比率下降(即地震活动阴影)的可行性。为此,必须放弃关于大量地震的假设,因此必须放弃通常所假设的使用高斯统计的方法。最后,我们分析了1992年4月22日M-w 6.1约书亚树地震地区的1992年6月28日M-w 7.3兰德斯地震之后的地震活动率调制。观察到了明显的早期触发事件(即在最初的几天),然后出现了地震静止。这可能表明存在两种不同的相互作用机制,第一种是由于行进地震波使活动断层不稳定而引起的,第二种是由于剩余的静态应力扰动引起的。

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