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Colloquium PaperSelf-organized complexity in the physical biological and social sciences: Unified scaling law for earthquakes

机译:讨论会论文物理生物和社会科学中的自组织复杂性:地震的统一缩放定律

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摘要

We propose and verify a unified scaling law that provides a framework for viewing the probability of the occurrence of earthquakes in a given region and for a given cutoff magnitude. The law shows that earthquakes occur in hierarchical correlated clusters, which overlap with other spatially separated correlated clusters for large enough time periods and areas. For a small enough region and time-scale, only a single correlated group can be sampled. The law links together the Gutenberg–Richter Law, the Omori Law of aftershocks, and the fractal dimensions of the faults. The Omori Law is shown to be the short time limit of general hierarchical phenomenon containing the statistics of both “main shocks” and “aftershocks,” indicating that they are created by the same mechanism.
机译:我们提出并验证了统一的比例定律,该定律为查看给定区域和给定截断强度的地震发生的可能性提供了框架。该定律表明,地震发生在分层的相关簇中,在足够长的时间段和区域内,它们与其他空间分离的相关簇重叠。对于足够小的区域和时间尺度,只能采样单个相关组。该定律将古腾堡-里希特定律,余震的大森定律以及断层的分形维数联系在一起。大森定律被证明是包含“主震”和“余震”的统计数据的一般分层现象的短时限,表明它们是由相同的机制产生的。

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