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Spatial and temporal seismic velocity changes on Kyushu Island during the 2016 Kumamoto earthquake

机译:2016年熊本地震期间九州岛的时空地震速度变化

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摘要

Monitoring of earthquake faults and volcanoes contributes to our understanding of their dynamic mechanisms and to our ability to predict future earthquakes and volcanic activity. We report here on spatial and temporal variations of seismic velocity around the seismogenic fault of the 2016 Kumamoto earthquake [moment magnitude (Mw) 7.0] based on ambient seismic noise. Seismic velocity near the rupture faults and Aso volcano decreased during the earthquake. The velocity reduction near the faults may have been due to formation damage, a change in stress state, and an increase in pore pressure. Further, we mapped the post-earthquake fault-healing process. The largest seismic velocity reduction observed at Aso volcano during the earthquake was likely caused by pressurized volcanic fluids, and the large increase in seismic velocity at the volcano’s magma body observed ~3 months after the earthquake may have been a response to depressurization caused by the eruption. This study demonstrates the usefulness of continuous monitoring of faults and volcanoes.
机译:对地震断层和火山的监测有助于我们了解它们的动力机制,并有助于我们预测未来的地震和火山活动。我们在此报告基于环境地震噪声的2016年熊本地震[矩震级(Mw)7.0]的地震成因断层周围的地震速度的时空变化。在地震过程中,断裂断层附近的地震速度和阿苏火山速度下降。断层附近的速度降低可能是由于地层破坏,应力状态变化以及孔隙压力增加所致。此外,我们绘制了地震后的故障修复过程。地震期间在阿苏火山中观察到的最大地震速度降低可能是由加压的火山流体引起的,地震后约3个月观察到的火山岩浆体地震速度的大幅增加可能是对喷发引起的降压的反应。这项研究证明了连续监测断层和火山的有用性。

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