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Rapid accelerations of Antarctic Peninsula outlet glaciers driven by surface melt

机译:表面熔体驱动的南极半岛出口冰川的快速加速

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Atmospheric warming is increasing surface melting across the Antarctic Peninsula, with unknown impacts upon glacier dynamics at the ice-bed interface. Using high-resolution satellite-derived ice velocity data, optical satellite imagery and regional climate modelling, we show that drainage of surface meltwater to the bed of outlet glaciers on the Antarctic Peninsula occurs and triggers rapid ice flow accelerations (up to 100% greater than the annual mean). This provides a mechanism for this sector of the Antarctic Ice Sheet to respond rapidly to atmospheric warming. We infer that delivery of water to the bed transiently increases basal water pressure, enhancing basal motion, but efficient evacuation subsequently reduces water pressure causing ice deceleration. Currently, melt events are sporadic, so efficient subglacial drainage cannot be maintained, resulting in multiple short-lived (6?day) ice flow perturbations. Future increases in meltwater could induce a shift to a glacier dynamic regime characterised by seasonal-scale hydrologically-driven ice flow variations.
机译:大气升温正在增加南极半岛的表面熔化,在冰床界面上对冰川动态的影响未知。使用高分辨率卫星衍生的冰速度数据,光学卫星图像和区域气候建模,我们表明,表面熔化到南极半岛的出口冰川床上发生并触发快速冰流量(高达100%)年度平均值)。这为南极冰盖的该部门提供了一种机制,以迅速响应大气变暖。我们推断出近透过的水,增加了基础水压,增强基础运动,但随后减少了导致冰减速的水压。目前,熔体事件是零星的,因此不能保持高效的底纤维排水,导致多个短寿命(<6?日)冰流扰动。 Meltwater的未来增加可能会导致冰川动态制度的转变,其特征在于季节规模的水文驱动的冰流量变化。

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