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Surface melt driven summer diurnal and winter multi-day stick-slip motion and till sedimentology

机译:地表融雪驱动的夏季昼夜和冬季多日粘滑运动直至沉积

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摘要

Fluctuations in glacier motion are very common and are thought to be controlled by subglacial hydrology and till deformation. There are few instrumented studies that have monitored seasonal changes. We use the innovative Glacsweb subglacial in situ wireless probes, combined with dGPS and custom geophone data from an Icelandic soft-bedded temperate glacier, to show that there are two distinct seasonal styles of speed-up events. Relatively small diurnal events occur during the melt season, whilst during winter there are larger multi-day events related to positive degree days. These events are accompanied by a distinct pattern of till deformation and basal icequakes. We argue these reflect stick-slip motion which occurs when the glacier hydrological system is unable to accommodate the melt water flux generated by surface melt episodes. We show a rare fully instrumented coupled glacier/till record of contrasting summer and winter stick-slip motion and discuss its implication for till sedimentology.
机译:冰川运动的波动非常普遍,被认为是由冰川下的水文学和直至变形控制的。很少有仪器研究能够监测季节变化。我们使用创新的Glacsweb冰下亚冰原位无线探头,结合dGPS和来自冰岛软层温带冰川的自定义地震检波器数据,来证明加速事件有两种截然不同的季节性样式。相对较小的昼夜事件发生在融化季节,而在冬季,则有较大的多日事件,与正度日有关。这些事件伴随着耕作变形和基础冰震的明显模式。我们认为这些反映的是粘滑运动,发生在冰川水文系统无法适应地表融化事件产生的融水通量时。我们展示了一个罕见的完全仪器化的冰川/耕作记录,对比了夏季和冬季的粘滑运动,并讨论了其对直到沉积学的意义。

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