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Past water flow beneath Pine Island and Thwaites glaciers, West Antarctica

机译:过去的水流在松树岛和塔拉克·斯塔尔科的冰川下水

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Outburst floods from subglacial lakes beneath the Antarctic Ice Sheet modulate ice-flow velocities over periods of months to years. Although subglacial lake drainage events have been observed from satellite-altimetric data, little is known about their role in the long-term evolution of ice-sheet basal hydrology. Here, we systematically map and model past water flow through an extensive area containing over 1000 subglacial channels and 19 former lake basins exposed on over 19000km2 of seafloor by the retreat of Pine Island and Thwaites glaciers, West Antarctica. At 507m wide and 43m deep on average, the channels offshore of present-day Pine Island and Thwaites glaciers are approximately twice as deep, 3 times as wide, and cover an area over 400 times larger than the terrestrial meltwater channels comprising the Labyrinth in the Antarctic Dry Valleys. The channels incised into bedrock offshore of contemporary Pine Island and Thwaites glaciers would have been capable of accommodating discharges of up to 8.8×106m3s?1. We suggest that the channels were formed by episodic discharges from subglacial lakes trapped during ice-sheet advance and retreat over multiple glacial periods. Our results document the widespread influence of episodic subglacial drainage events during past glacial periods, in particular beneath large ice streams similar to those that continue to dominate contemporary ice-sheet discharge.
机译:在南极冰盖下爆裂湖泊的爆发洪水在几个月内调制冰流速。虽然已经从卫星 - 高度数据观察到沉淀湖排水事件,但在冰片基水道的长期演变中的作用很少几乎是知名的。在这里,我们系统地通过广泛的地区系统地映射和模型,含有超过1000个底冰通道的广泛区域和19000万英镑的前湖盆地,由南南极洲的松树岛和Thwaites冰川的撤退超过19000km2。平均每天507米宽,43米,现今的野生岛和撒拉基斯冰川的渠道大约是深度的两倍,宽3倍,覆盖超过包括迷宫的地面熔喷渠道的400倍超过400倍南极干燥谷。在现代松树岛和Thwaites冰川的基岩海上切入的渠道将能够容纳高达8.8×106m3s的放电?1。我们建议通过在冰板前进期间捕获的底裂湖湖泊的情节排放形成渠道,并在多个冰川期间退缩。我们的结果记录了在过去的冰川期间的耻辱性底纤维排水事件的广泛影响,特别是与那些继续占据现代冰片放电的大型冰流下方。

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