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Large subglacial lakes in East Antarctica at the onset of fast-flowing ice streams

机译:快速流冰开始时南极东部的大型冰河湖

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Water plays a crucial role in ice-sheet stability and the onset of ice streams. Subglacial lake water moves between lakes and rapidly drains, causing catastrophic floods. The exact mechanisms by which subglacial lakes influence ice-sheet dynamics are unknown, however, and large subglacial lakes have not been closely associated with rapidly flowing ice streams. Here we use satellite imagery and ice-surface elevations to identify a region of subglacial lakes, similar in total area to Lake Vostok, at the onset region of the Recovery Glacier ice stream in East Antarctica and predicted by ice-sheet models. We define four lakes through extensive, flat, featureless regions of ice surface bounded by upstream troughs and downstream ridges. Using ice velocities determined using interferometric synthetic aperture radar (InSAR), we find the onset of rapid flow (moving at 20 to 30m yr~(-1)) of the tributaries to the Recovery Glacier ice stream in a 280-km-wide segment at the downslope margins of these four subglacial lakes. We concludernthat the subglacial lakes initiate and maintain rapid ice flow through either active modification of the basal thermal regime of the ice sheet by lake accretion or through scouring bedrock channels in periodic drainage events. We suggest that the role of subglacial lakes needs to be considered in ice-sheet mass balance assessments.
机译:水在冰盖稳定性和冰流的爆发中起着至关重要的作用。冰川下的湖水在湖泊之间移动并迅速排泄,造成灾难性的洪水。但是,冰川下湖泊影响冰盖动力学的确切机制尚不清楚,而且大型冰川下湖泊与快速流动的冰流并没有紧密联系。在这里,我们使用卫星图像和冰面高程确定了一个冰下湖泊区域,该区域的总面积与沃斯托克湖相似,位于南极东部复苏冰川冰流的起始区域,并通过冰盖模型进行了预测。我们通过由上游槽和下游山脊界定的广泛,平坦,无特征的冰面区域定义了四个湖泊。利用由干涉合成孔径雷达(InSAR)确定的冰速,我们发现了280公里宽段中支流快速流(在20至30m yr〜(-1)处)流向恢复冰川冰流的开始在这四个冰河湖的下坡边缘。我们得出的结论是,通过湖泊增生或通过定期排水事件中冲刷基岩通道来积极改变冰盖的基础热力状态,从而使冰下湖泊开始并维持快速的冰流。我们建议在冰盖质量平衡评估中应考虑冰下湖泊的作用。

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