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Accelerated nucleation of the 2014 Iquique, Chile Mw 8.2 Earthquake

机译:加速2014年IQuique的成核,智利MW 8.2地震

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The earthquake nucleation process has been vigorously investigated based on geophysical observations, laboratory experiments, and theoretical studies; however, a general consensus has yet to be achieved. Here, we studied nucleation process for the 2014 Iquique, Chile Mw 8.2 megathrust earthquake located within the current North Chile seismic gap, by analyzing a long-term earthquake catalog constructed from a cross-correlation detector using continuous seismic data. Accelerations in seismicity, the amount of aseismic slip inferred from repeating earthquakes, and the background seismicity, accompanied by an increasing frequency of earthquake migrations, started around 270 days before the mainshock at locations up-dip of the largest coseismic slip patch. These signals indicate that repetitive sequences of fast and slow slip took place on the plate interface at a transition zone between fully locked and creeping portions. We interpret that these different sliding modes interacted with each other and promoted accelerated unlocking of the plate interface during the nucleation phase.
机译:基于地球物理观测,实验室实验和理论研究,大力调查地震成核过程;但是,尚未实现一般共识。在这里,我们研究了2014年智利MW 8.2 Megathrust地震的成核过程,通过使用连续地震数据分析了由互相关检测器构成的长期地震目录。地震性的加速度,从重复地震推断的抗空汗流量,以及伴随地震迁徙频率越来越多的地震性,在大约270天之前开始了最大的电影滑动贴片的位置。这些信号表明,快速和慢速滑动的重复序列在完全锁定和爬行部分之间的过渡区处发生在板界面上。我们解释这些不同的滑动模式彼此相互作用,并且在成核阶段期间促进了板界面的加速解锁。

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