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Sporadic low-velocity volumes spatially correlate with shallow very low frequency earthquake clusters

机译:零散的低速体积与浅层超低频地震群在空间上相关

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摘要

A low-velocity zone (LVZ) has been detected by seismic exploration surveys within the Nankai accretionary prism toe off the Kii Peninsula, southwestern Japan, and is considered to be a mechanically weak volume at depth. Such mechanical heterogeneities potentially influence seismic and tsunamigenic slips on megathrust earthquakes in the subduction zone. However, the spatial distribution of the LVZ along the trough-parallel direction is still elusive. Here we show sporadic LVZs in the prism toe from one-dimensional shear wave velocity (Vs) profiles obtained at 49 cabled ocean bottom stations, which were estimated by a nonlinear inversion technique, simulated annealing, using the displacement–pressure ratios of the Rayleigh wave. The estimated distribution of LVZs along the trough widely correlates with the epicentres of shallow very low frequency earthquakes (sVLFEs), which suggests that sVLFEs are activated in the sporadically distributed low-velocity and mechanically weak volumes where fluids significantly reduce the shear strength of faults.
机译:在日本西南部纪伊半岛对开的南海增生棱柱脚趾内,通过地震勘探调查发现了一个低速带(LVZ),该深度带被认为是深度上的机械弱体积。这种机械异质性可能影响俯冲带特大推力地震的地震和海啸成因滑动。但是,LVZ沿波谷平行方向的空间分布仍然难以捉摸。在这里,我们从49个缆索海底站获得的一维剪切波速度(Vs)剖面显示了棱镜趾中的零星LVZ,这些剖面是通过非线性反演技术(模拟退火)使用瑞利波的位移-压力比估算的。沿着低谷的LVZ分布估计与浅层超低频地震(sVLFEs)的震中广泛相关,这表明sVLFEs在零星分布的低速和机械弱体积中被激活,其中流体显着降低了断层的剪切强度。

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