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Long-range dependence in earthquake-moment release and implications for earthquake occurrence probability

机译:地震矩释放的长期依赖性及其对地震发生概率的影响

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摘要

Since the beginning of the 1980s, when Mandelbrot observed that earthquakes occur on ‘fractal’ self-similar sets, many studies have investigated the dynamical mechanisms that lead to self-similarities in the earthquake process. Interpreting seismicity as a self-similar process is undoubtedly convenient to bypass the physical complexities related to the actual process. Self-similar processes are indeed invariant under suitable scaling of space and time. In this study, we show that long-range dependence is an inherent feature of the seismic process, and is universal. Examination of series of cumulative seismic moment both in Italy and worldwide through Hurst’s rescaled range analysis shows that seismicity is a memory process with a Hurst exponent H ≈ 0.87. We observe that H is substantially space- and time-invariant, except in cases of catalog incompleteness. This has implications for earthquake forecasting. Hence, we have developed a probability model for earthquake occurrence that allows for long-range dependence in the seismic process. Unlike the Poisson model, dependent events are allowed. This model can be easily transferred to other disciplines that deal with self-similar processes.
机译:自1980年代初以来,当曼德布洛特(Mandelbrot)观察到地震发生在“分形”自相似集合上时,许多研究都对导致地震过程中自相似的动力学机制进行了研究。将地震活动解释为一个自相似过程无疑可以方便地绕过与实际过程相关的物理复杂性。在空间和时间的适当缩放下,自相似过程确实是不变的。在这项研究中,我们表明远程依赖性是地震过程的固有特征,并且具有普遍性。通过赫斯特重新定标的范围分析,对意大利和世界范围内的一系列累积地震矩进行了检验,结果表明,地震活动是一个具有赫斯特指数H≈0.87的记忆过程。我们观察到,除了目录不完整的情况以外,H基本上是时空不变的。这对地震预报有影响。因此,我们开发了地震发生的概率模型,该模型允许在地震过程中进行长期依赖。与泊松模型不同,允许相关事件。该模型可以轻松地转移到处理自相似过程的其他学科。

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