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Power law relations in earthquakes from microscopic to macroscopic scales

机译:从显微镜到宏观鳞片地震中的权力法关系

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Understanding the physics of earthquakes is a crucial step towards improving the prediction accuracy of earthquakes. Scale invariance or fractal features are often reported in earthquakes, such as the size distribution of earthquakes, the spatial distribution of hypocenters, and the frequency of aftershocks. Here we assess whether other key parameters and quantities involved in earthquakes also conform to the power law. By analyzing a large amount of data collected from the laboratory experiments and field monitoring of earthquakes, we find that the crack density on the two sides of small scale fracture or large scale fault decreases with increasing distance following the power law, and the crack number-crack length distribution is also scale invariant like natural faults. Besides, the earthquake b-value is found to decrease with increasing stress in a power law in the brittle regime of the Earth's crust. The friction coefficient for dry fault and gouges or for partially saturated gouges decreases with the increasing effective normal stress in a power law. The stress dependency of b-value and friction coefficient is dictated by different mechanisms. Our findings will advance the understanding of earthquake physics, and will enable us to better model, predict and conduct hazard assessment of earthquakes.
机译:理解地震物理学是提高地震预测准确性的关键步骤。地震中经常报告尺度不变性或分形特征,例如地震的大小分布,低刻录物的空间分布以及余震的频率。在这里,我们评估地震中其他关键参数和数量是否符合电力法。通过分析从实验室实验实验和地震的现场监测中收集的大量数据,我们发现小规模断裂或大规模故障两侧的裂缝密度随着电力法的距离和裂缝数而下降,以及裂缝数 - 裂缝长度分布也是鳞片不变的自然故障。此外,发现地震B值随着地壳脆弱制度的脆弱制度的幂律中的压力越来越大。干扰和凿沟或用于部分饱和凿孔的摩擦系数随着动力法中的有效正常应力的增加而降低。 B值和摩擦系数的应力依赖性由不同的机制决定。我们的调查结果将推动对地震物理学的理解,并使我们能够更好地模范,预测和对地震进行危害评估。

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