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Foreshock migration preceding the 2016 M-w 7.0 Kumamoto earthquake, Japan

机译:日本2016年熊本州7.0级地震前的前震迁移

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We investigated the spatiotemporal evolution of an earthquake sequence following a series of large shallow intraplate earthquakes, including a M-w 6.2 foreshock and M-w 7.0 main shock, in the Kumamoto area of Kyushu, SW Japan. To more precisely characterize the evolution of the earthquake sequences, we applied a matched filter technique to continuous waveform data, using template events obtained via a double-difference relocation algorithm. Migrations of seismicity fronts along the directions of fault strike and dip are clearly seen, starting immediately after the M-w 6.2 foreshock. These migrations are interpreted to result from aseismic slip triggered by the foreshock, propagating toward the nucleation point of the subsequent M-w 7.0 main shock rupture. When combined with static stress changes induced by the M-w 6.2 foreshock, it is likely that stress transfer from both aseismic and seismic slip during the foreshock sequence loaded stress onto the main shock rupture faults, bringing them closer to failure.
机译:在日本西南部的熊本地区,我们调查了一系列大型浅板内地震(包括M-w 6.2前震和M-w 7.0主震)后地震序列的时空演变。为了更精确地描述地震序列的演化,我们使用匹配的滤波技术,通过双差重定位算法获得的模板事件,对连续波形数据进行了应用。从M-w 6.2前震开始后,就清楚地看到了地震活动性沿断层走向和倾角方向的迁移。这些迁移被解释为是由前震触发的抗震滑动导致的,并向随后的M-w 7.0主震破裂的成核点传播。当结合M-w 6.2前震引起的静态应力变化时,前震序列中地震波和地震滑移的应力传递可能会将应力加载到主震破裂断裂上,使它们更接近破坏。

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