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首页> 外文期刊>Journal of Glaciology >Basal seismicity of the Northeast Greenland Ice Stream
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Basal seismicity of the Northeast Greenland Ice Stream

机译:东北格陵兰冰流的基础地震性

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Seismic studies of glaciers yield insights into spatio-temporal processes within and beneath glaciers on scales relevant to flow and deformation of the ice. These methods enable direct monitoring of the bed in ways that complement other geophysical techniques, such as geodetic or ground penetrating radar observations. In this work, we report on the analysis of passive seismic data collected from the interior of the North East Greenland Ice Stream, the Greenland ice sheet's largest outlet glacier. We record thousands of basal earthquakes, many of which repeat with nearly identical waveforms. We also record many long-duration glacial tremor episodes that migrate across the seismic network with slow velocities (e.g. 4-12 m s(-1)). Analysis of the basal earthquakes indicates a transition between times of individual event activity and times of tremor activity. We suggest that both processes are produced by shear slip at localized asperities along the bed. The transition between discrete and quasi-continuous slipping modes may be driven by pore-water pressure transients or heterogeneous strain accumulation in the ice due to strength contrasts of the underlying till.
机译:冰川的地震研究在冰鳞片内和下面的冰川内部和下方的时空过程中的震动研究。这些方法能够以补充其他地球物理技术的方式直接监测床,例如大地物理技术,例如渗透雷达观测。在这项工作中,我们报告了从格陵兰冰块最大的出口冰川中东北格陵兰冰河流中内部收集的被动地震数据的分析。我们录制了数千个基底地震,其中许多是重复几乎相同的波形。我们还记录了许多长期冰川震颤剧集,其跨越震动网络的慢速迁移(例如4-12 m S(-1))。基础地震分析表明,各个事件活动和震颤活动的时间之间的过渡。我们认为这两个过程都是通过沿床的局部粗糙度的剪切滑动产生的。由于底层的强度对比,离散和准连续滑动模式之间的过渡可以由孔隙水压瞬变或异质应变累积驱动。

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