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On near-source earthquake triggering

机译:近源地震触发

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When one earthquake triggers others nearby, what connects them? Two processes are observed: static stress change from fault offset and dynamic stress changes from passing seismic waves. In the near-source region (r 50 km for M5 sources) both processes may be operating, and since both mechanisms are expected to raise earthquake rates, it is difficult to isolate them. We thus compare explosions with earthquakes because only earthquakes cause significant static stress changes. We find that large explosions at the Nevada Test Site do not trigger earthquakes at rates comparable to similar magnitude earthquakes. Surface waves are associated with regional and long-range dynamic triggering, but we note that surface waves with low enough frequency to penetrate to depths where most aftershocks of the 1992 M = 5.7 Little Skull Mountain main shock occurred (12 km) would not have developed significant amplitude within a 50-km radius. We therefore focus on the best candidate phases to cause local dynamic triggering, direct waves that pass through observed near-source aftershock clusters. We examine these phases, which arrived at the nearest (200-270 km) broadband station before the surface wave train and could thus be isolated for study. Direct comparison of spectral amplitudes of presurface wave arrivals shows that M 5 explosions and earthquakes deliver the same peak dynamic stresses into the near-source crust. We conclude that a static stress change model can readily explain observed aftershock patterns, whereas it is difficult to attribute near-source triggering to a dynamic process because of the dearth of aftershocks near large explosions.
机译:当一场地震在附近触发其他人时,它们之间又有什么联系?观察到两个过程:断层偏移引起的静态应力变化和地震波通过引起的动态应力变化。在近震源地区(对于M5震源,约50 km),两个过程都可能同时运行,并且由于预计这两种机制都会提高地震发生率,因此很难将它们隔离开。因此,我们将爆炸与地震进行比较,因为只有地震会引起明显的静应力变化。我们发现,在内华达州试验场发生的大爆炸并没有以与类似地震相当的速度触发地震。表面波与区域性和远程动态触发有关,但我们注意到,表面波的频率不足以穿透到1992 M = 5.7的小余震山大部分余震发生的深度(12 km)在50公里半径内有明显的振幅。因此,我们将重点放在最佳候选相位上,以引起局部动态触发,直接波通过观察到的近源余震簇。我们检查了这些阶段,这些阶段到达了表面波列车之前最近的(200-270 km)宽带站,因此可以被隔离进行研究。直接比较地表波到达的频谱幅度表明,M 5爆炸和地震将相同的峰值动态应力传递到近源地壳中。我们得出的结论是,静态应力变化模型可以很容易地解释所观察到的余震模式,但是由于大爆炸附近余震的缺乏,很难将近源触发归因于动态过程。

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