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Rapid submarine ice melting in the grounding zones of ice shelves in West Antarctica

机译:南极西部冰架地面区域的海底冰块迅速融化

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摘要

Enhanced submarine ice-shelf melting strongly controls ice loss in the Amundsen Sea embayment (ASE) of West Antarctica, but its magnitude is not well known in the critical grounding zones of the ASE's major glaciers. Here we directly quantify bottom ice losses along tens of kilometres with airborne radar sounding of the Dotson and Crosson ice shelves, which buttress the rapidly changing Smith, Pope and Kohler glaciers. Melting in the grounding zones is found to be much higher than steady-state levels, removing 300–490 m of solid ice between 2002 and 2009 beneath the retreating Smith Glacier. The vigorous, unbalanced melting supports the hypothesis that a significant increase in ocean heat influx into ASE sub-ice-shelf cavities took place in the mid-2000s. The synchronous but diverse evolutions of these glaciers illustrate how combinations of oceanography and topography modulate rapid submarine melting to hasten mass loss and glacier retreat from West Antarctica.
机译:增强的海底冰架融化强烈地控制了南极西部的阿蒙森海圈(ASE)的冰流失,但是在ASE主要冰川的关键接地带中,其规模并不为人所知。在这里,我们利用Dotson和Crosson冰架的机载雷达测深直接量化了数十公里处的底部冰损失,这支持了迅速变化的Smith,Pope和Kohler冰川。发现地面区域的融化远高于稳态水平,在2002年至2009年之间,在撤退的史密斯冰川下清除了300–490µm的固态冰。剧烈,不平衡的融化支持了以下假设:2000年代中期,海洋热量大量涌入ASE子冰架空洞。这些冰川同步而多样的演变说明了海洋学和地形学的结合如何调节海底快速融化,从而加速了南极西部的质量损失和冰川退缩。

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