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On the nucleation of creep and the interaction between creep and seismic slip on rate- and state-dependent faults

机译:关于速率和状态相关断层的蠕变成核以及蠕变与地震滑动之间的相互作用

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摘要

Previous studies of rupture nucleation were restricted to conditions well within the unstable regime. In this study, we show that positive stress changes applied on intrinsically stable interfaces can trigger quasi-static slip episodes. Similar to the onset of ruptures on unstable fractures, the creep on intrinsically stable fractures too are preceded by intervals during which the slip is highly localized. The size of the nucleation patch depends not only on the constitutive parameters, but also on the stressing history. We examine the effect of a stress step on the slip history of a seismic fault interacting with a creeping segment, and show that stress transfer due to creep may strongly affect the timing of an impending seismic slip. Finally, we investigate the effect of a stress step on the slip history of an isolated unstable strip surrounded by creep, and show that a positive stress step triggers aftershocks, whose rate decays as 1/time during most of the sequence, but much faster than 1/time shortly after the stress step.
机译:先前关于破裂成核的研究仅限于不稳定范围内的条件。在这项研究中,我们表明,施加在固有稳定界面上的正应力变化可以触发准静态滑移发作。类似于不稳定裂缝破裂的发生一样,本质上稳定的裂缝的蠕变也要先于一定的时间间隔进行,在该时间间隔内高度滑动。成核斑块的大小不仅取决于本构参数,而且取决于应力历史。我们研究了应力阶跃对与蠕变段相互作用的地震断层滑动历史的影响,并表明由于蠕变引起的应力传递可能强烈影响即将发生的地震滑动的时间。最后,我们研究了应力步长对孤立的不稳定蠕变带周围滑移历史的影响,并显示了正应力步长会触发余震,余震的速率在大多数序列中衰减为1 /次,但比压力步骤后不久,每次1 /次。

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