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首页> 外文期刊>Bulletin of the Seismological Society of America >Earthquake ruptures with strongly rate-weakening friction and off-fault plasticity, part 2: Nonplanar faults
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Earthquake ruptures with strongly rate-weakening friction and off-fault plasticity, part 2: Nonplanar faults

机译:具有强烈的减弱速率摩擦和断层可塑性的地震破裂,第2部分:非平面断层

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Observations demonstrate that faults are fractal surfaces with deviations from planarity at all scales. We study dynamic rupture propagation on self-similar faults having root mean square (rms) height fluctuations of order 10~(-3) to 10~(-2) times the profile length. Our 2D plane strain models feature strongly rate-weakening fault friction and off-fault Drucker-Prager viscoplasticity. The latter bounds otherwise unreasonably large stress concentrations in the vicinity of bends. Our choice of a cohesionless yield function prevents tensile stress states and thus fault opening. A consequence of strongly rate-weakening friction is the existence of a critical background stress level above which self-sustaining rupture propagation, in the form of self-healing slip pulses, first becomes possible. Around this level, at which natural faults are expected to operate, ruptures become extremely sensitive to fault roughness and exhibit substantial fluctuations in rupture velocity. Except for shallow inclinations of the maximum compressive stress to the fault (less than about 20°), the fluctuations are anticorrelated with the local fault slope. These accelerations and decelerations of the rupture, together with naturally emerging slip heterogeneity, excite waves of all wavelengths and result in ground acceleration spectra that are flat at high frequency, consistent with observed strong motion records.
机译:观察表明,断层是分形表面,在所有尺度上均偏离平面度。我们研究具有均方根(rms)高度波动幅度为剖面长度10〜(-3)至10〜(-2)倍的自相似断层的动态破裂传播。我们的2D平面应变模型具有极强的速率减弱断层摩擦力和断层Drucker-Prager粘塑性。否则,后者会在弯头附近限制不合理的大应力集中。我们选择的无内聚屈服函数可防止拉伸应力状态,从而防止断层张开。强烈的速率减弱摩擦的结果是存在一个临界背景应力水平,在该应力水平以上,首先可能以自愈滑动脉冲的形式进行自我维持的破裂传播。在此水平附近,预计自然断裂将在该水平上发生,破裂对断层粗糙度变得极为敏感,并显示出破裂速度的大幅波动。除了对断层的最大压缩应力的浅倾角(小于约20°)外,波动与局部断层斜率不相关。破裂的这些加速和减速,以及自然出现的滑动非均质性,激发了所有波长的波,并导致地面加速度频谱在高频下平坦,这与观察到的强运动记录一致。

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