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Glacial Earthquakes and Precursory Seismicity Associated With Thwaites Glacier Calving

机译:与Thwaites Glacier Calcing相关的冰川地震和前兆地震性

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We observe two (similar to M-S 3) long-period (10-30 s) seismic events that originate from the terminus of Thwaites Glacier, Antarctica. Serendipitous acquisition of satellite images confirm that the seismic events were glacial earthquakes generated during the capsizing of icebergs. The glacial earthquakes were preceded by 6 days of discrete high-frequency seismic events that can be observed at distances exceeding 250 km. The high-frequency seismicity displays an increasing rate of occurrence, culminating in several hours of sustained tremor coeval with the long-period events. A series of satellite images collected during this precursory time period show that the high-frequency events and tremor are the result of accelerating growth of ancillary fractures prior to the culminating calving event. This study indicates that seismic data have the potential to elucidate the processes by which Thwaites Glacier discharges into the ocean, thus improving our ability to constrain future sea level rise.
机译:我们观察到两个(类似于M-S 3)长期(10-30秒)源自南极洲冰川末端的地震事件。 Serentipitous的卫星图像的收购确认地震事件是在冰山倾写中产生的冰川地震。冰川地震前面是6天的离散高频地震事件,可以在超过250公里的距离下观察到。高频地震性显示出现增加的发生率,在几小时的持续震颤与长期事件中的持续震颤群体中产生。在这个前兆时段期间收集的一系列卫星图像表明,高频事件和震颤是在最终产犊事件之前加速辅助骨折的增长的结果。本研究表明,地震数据有可能阐明冰川冰川进入海洋的过程,从而提高了我们限制未来海平面上升的能力。

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