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Earthquake magnitude estimation from peak amplitudes of very early seismic signals on strong motion records

机译:基于强运动记录上非常早期地震信号的峰值幅度的地震幅度估计

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摘要

We show that the low-pass filtered, peak amplitudes of initial P- and S-wave seismic signals recorded in the vicinity of an occurring earthquake source correlates with the earthquake magnitude and may be used for real-time estimation of the event size in seismic early warning applications. The earthquake size can be therefore estimated using only a couple of seconds of signal from the P- or S-wave onsets, i.e. while the rupture itself is still propagating and rupture dimension is far from complete. We argue that dynamic stress release and/or slip duration on the fault in the very early stage of seismic fracture, scales both with the observed peak amplitude and with the elastic energy available for fracture propagation. The probability that a fracture grows to a larger size should scale with the energy initially available.
机译:我们表明,在发生地震源附近的低通滤波,初始P和S波地震信号的峰值幅度与地震幅度相关联,并且可用于地震中的事件尺寸的实时估计 预警应用程序。 因此,可以使用来自P型或S波壁的信号仅使用几秒钟的信号来估计地震大小,即,虽然破裂本身仍在传播并且破裂维度远非完整。 我们认为,在地震骨折的早期阶段的故障中的动态应力释放和/或滑动持续时间,与观察到的峰值幅度均衡,并且具有可用于断裂传播的弹性能量。 骨折增长到更大尺寸的概率应该随着最初可用的能量而扩展。

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