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Generalized statistical mechanics approaches to earthquakes and tectonics

机译:地震和构造的广义统计力学方法

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摘要

Despite the extreme complexity that characterizes the mechanism of the earthquake generation process, simple empirical scaling relations apply to the collective properties of earthquakes and faults in a variety of tectonic environments and scales. The physical characterization of those properties and the scaling relations that describe them attract a wide scientific interest and are incorporated in the probabilistic forecasting of seismicity in local, regional and planetary scales. Considerable progress has been made in the analysis of the statistical mechanics of earthquakes, which, based on the principle of entropy, can provide a physical rationale to the macroscopic properties frequently observed. The scale-invariant properties, the (multi) fractal structures and the long-range interactions that have been found to characterize fault and earthquake populations have recently led to the consideration of non-extensive statistical mechanics (NESM) as a consistent statistical mechanics framework for the description of seismicity. The consistency between NESM and observations has been demonstrated in a series of publications on seismicity, faulting, rock physics and other fields of geosciences. The aim of this review is to present in a concise manner the fundamental macroscopic properties of earthquakes and faulting and how these can be derived by using the notions of statistical mechanics and NESM, providing further insights into earthquake physics and fault growth processes.
机译:尽管表征地震发生过程的机制极其复杂,但简单的经验标度关系适用于各种构造环境和规模的地震和断层的集体性质。这些属性的物理特征和描述它们的比例关系引起了广泛的科学兴趣,并被纳入了本地,区域和行星尺度的地震概率预测中。在地震统计力学的分析方面已经取得了相当大的进展,它基于熵原理,可以为经常观察到的宏观性质提供物理原理。现已发现具有断层和地震种群特征的尺度不变性质,(多重)分形结构和远距离相互作用已导致人们考虑将非扩展统计力学(NESM)作为一种一致的统计力学框架用于对地震的描述。 NESM和观测值之间的一致性已在一系列有关地震活动性,断层,岩石物理学和地球科学其他领域的出版物中得到证明。本文的目的是以简明的方式介绍地震和断层的基本宏观特性,以及如何通过使用统计力学和NESM的概念来推导这些基本特性,从而提供对地震物理和断层增长过程的进一步见解。

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