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Variability of basal melt beneath the Pine Island Glacier ice shelf,West Antarctica

机译:西南极洲松岛冰川冰架下的基础熔体变化

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摘要

Observations from satellite and airborne platforms are combined with model calculations to infer the nature and efficiency of basal melting of the Pine Island Glacier ice shelf, West Antarctica, by ocean waters. Satellite imagery shows surface features that suggest ice-shelf-wide changes to the ocean's influence on the ice shelf as the grounding line retreated. Longitudinal profiles of ice surface and bottom elevations are analyzed to reveal a spatially dependent pattern of basal melt with an annual melt flux of 40.5 Gt a~(-1). One profile captures a persistent set of surface waves that correlates with quasi-annual variations of atmospheric forcing of Amundsen Sea circulation patterns, establishing a direct connection between atmospheric variability and sub-ice-shelf melting. Ice surface troughs are hydrostatically compensated by ice-bottom voids up to 150 m deep. Voids form dynamically at the grounding line, triggered by enhanced melting when warmer-than-average water arrives. Subsequent enlargement of the voids is thermally inefficient (4% or less) compared with an overall melting efficiency beneath the ice shelf of 22%. Residual warm water is believed to cause three persistent polynyas at the ice-shelf front seen in Landsat imagery. Landsat thermal imagery confirms the occurrence of warm water at the same locations.
机译:将卫星和机载平台的观测结果与模型计算相结合,以推断海水对南极西部的松岛冰川冰架基础融化的性质和效率。卫星图像显示的地表特征表明,随着接地线的退缩,整个冰架的变化影响了海洋对冰架的影响。分析了冰表面和底部高程的纵向剖面,揭示了年融通量为40.5 Gt a〜(-1)的基础熔体的空间依赖性。一个剖面捕获了一组永久的表面波,这些表面波与阿蒙森海环流模式的大气强迫的近似年度变化相关,从而在大气变化与冰层下融化之间建立了直接联系。冰表面槽由深达150 m的冰底空隙静水力补偿。当温度高于平均水平的水到达时,融化的增强会触发空隙在接地线上动态形成。与在冰架下的总熔化效率为22%相比,随后扩大空隙的热效率不高(4%或更小)。在Landsat影像中,残留的温水被认为会在冰架前部引起三个持续性的多年生多面体。 Landsat热像仪可以确认在相同位置出现了热水。

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