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Long-Time Relaxation Induced by Dynamic Forcing in Geomaterials

机译:动态强迫在地荒漠化诱导的长时间放松

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摘要

We present a theoretical model and experimental evidence of the long-time relaxation process (slow dynamics) in rocks and other geomaterials following a dynamic wave excitation, at scales ranging from the laboratory to the Earth. The model is based on the slow recovery of an ensemble of grain contacts and asperities broken by a mechanical impact. It includes an Arrhenius-type equation for recovery of the metastable, broken contacts. The model provides a characteristic size of the broken contacts (order 10~(-9) m) and predicts that their number increases with impact amplitude. Theoretical results are in good agreement with the laboratory and field data in that they predict both the logarithmic law of recovery rate and deviations from this law.
机译:我们在动态波激励之后展示了岩石和其他地质材料中的长时间放松过程(慢动力)的理论模型和实验证据,在从实验室到地球的鳞片上。 该模型基于谷物触点的集合缓慢恢复,并且通过机械冲击破坏的粗糙度。 它包括用于恢复亚稳态,破坏触点的Arrhenius型方程。 该模型提供破损触点的特征大小(订单10〜(-9)m)并预测它们的数量随着冲击幅度增加。 理论结果与实验室和现场数据吻合良好,因为它们预测了回收率的对数规律和来自这项法律的偏差。

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