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Tidal influence on Rutford Ice Stream, West Antarctica: observations of surface flow and basal processes from closely-spaced GPS and passive seismic stations

机译:对南极洲西部拉特福德冰川的潮汐影响:来自近距离Gps和被动地震台站的地表径流和基底过程的观测

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摘要

High-resolution surface velocity measurements and passive seismic observations from Rutford Ice Stream, West Antarctica, 40 km upstream from the grounding line are presented. These measurements indicate a complex relationship between the ocean tides and currents, basal conditions and ice-stream flow. Both the mean basal seismicity and the velocity of the ice stream are modulated by the tides. Seismic activity increases twice during each semi-diurnal tidal cycle. The tidal analysis shows the largest velocity variation is at the fortnightly period, with smaller variations superimposed at diurnal and semi-diurnal frequencies. The general pattern of the observed velocity is two velocity peaks during each semi-diurnal tidal cycle, but sometimes three peaks are observed. This pattern of two or three peaks is more regular during spring tides, when the largest-amplitude velocity variations are observed, than during neap tides. This is the first time that velocity and level of seismicity are shown to correlate and respond to tidal forcing as far as 40 km upstream from the grounding line of a large ice stream.
机译:本文介绍了在距离接地线上游40 km的西南极州拉特福德冰溪进行的高分辨率表面速度测量和被动地震观测。这些测量结果表明,潮汐与洋流,基础条件和冰流之间存在复杂的关系。平均基础地震活动性和冰流速度都受到潮汐的影响。在每个半日潮汐周期中,地震活动增加两次。潮汐分析表明,最大的速度变化在每两周一次,而较小的变化叠加在昼夜和半昼夜频率上。观测到的速度的一般模式是在每个半日潮汐周期中有两个速度峰值,但有时会观察到三个峰值。当观察到最大幅度的速度变化时,与潮汐潮相比,在春季潮汐中,这种两个或三个峰值的模式更规则。这是首次显示出地震活动的速度和水平与大冰流接地线上游40 km处的潮汐强迫相关并作出响应。

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