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Maximum slip in Earthquake Fault Zones, apparent stress, and stick-slip friction

机译:地震断层带的最大滑移,表观应力和粘滑摩擦

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The maximum slip, observed or inferred, for a small patch within the larger fault zone of an earthquake is a remarkably well-constrained function of the seismic moment. A large set of maximum slips, mostly derived from slip models of major earthquakes, indicate that this parameter increases according to the cube root of the seismic moment. Consistent with this finding, neither the average slip rate for the patches of maximum slip nor the apparent stresses of earthquakes show any systematic dependence on seismic moment. Maximum average slip rates are several meters per second independent of moment and, for earthquakes in continental crustal settings, the apparent stress is limited to about 10 MPa. Results from stick-slip friction experiments in the laboratory, combined with information about the state of stress in the crust, can be used to predict, quite closely, the maximum slips and maximum average slip rates within the fault zones of major earthquakes as well as their apparent stresses. These findings suggest that stick-slip friction events observed in the laboratory and earthquakes in continental settings, even with large magnitudes, have similar rupture mechanisms. [References: 69]
机译:观察到或推断出,在地震较大断层带内的一个小块的最大滑移是地震矩的明显受约束的函数。大量的最大滑动,主要来自大地震的滑动模型,表明该参数根据地震矩的立方根增加。与此发现一致的是,最大滑移斑块的平均滑移率和地震的表观应力都没有显示出对地震矩的任何系统依赖性。最大平均滑移率是每秒几米,与力矩无关,并且对于大陆地壳环境中的地震,视在应力限制为大约10 MPa。实验室中的粘滑摩擦实验结果与地壳应力状态信息相结合,可以非常精确地预测大地震断裂带内的最大滑动和最大平均滑动率,以及他们明显的压力。这些发现表明,即使在实验室中观察到的粘滑摩擦事件以及在大陆环境中发生的地震,即使幅度很大,也具有类似的破裂机制。 [参考:69]

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