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首页> 外文期刊>The Cryosphere Discussions >Recent acceleration of Denman Glacier (1972–2017), East Antarctica, driven by grounding line retreat and changes in ice tongue configuration
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Recent acceleration of Denman Glacier (1972–2017), East Antarctica, driven by grounding line retreat and changes in ice tongue configuration

机译:丹曼冰川(1972-2017),东南极地区的最近加速,由接地线撤退驱动和冰舌配置的变化

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After Totten, Denman Glacier is the largest contributor to sea level rise in East Antarctica. Denman's catchment contains an ice volume equivalent to 1.5?m of global sea level and sits in the Aurora Subglacial Basin (ASB). Geological evidence of this basin's sensitivity to past warm periods, combined with recent observations showing that Denman's ice speed is accelerating and its grounding line is retreating along a retrograde slope, has raised the prospect that its contributions to sea level rise could accelerate. In this study, we produce the first long-term ( ~50 ?years) record of past glacier behaviour (ice flow speed, ice tongue structure and calving) and combine these observations with numerical modelling to explore the likely drivers of its recent change. We find a spatially widespread acceleration of the Denman system since the 1970s across both its grounded ( 17±4 ?% acceleration; 1972–2017) and floating portions ( 36±5 ?% acceleration; 1972–2017). Our numerical modelling experiments show that a combination of grounding line retreat, ice tongue thinning and the unpinning of Denman's ice tongue from a pinning point following its last major calving event are required to simulate an acceleration comparable with observations. Given its bed topography and the geological evidence that Denman Glacier has retreated substantially in the past, its recent grounding line retreat and ice flow acceleration suggest that it could be poised to make a significant contribution to sea level in the near future.
机译:托特登之后,德文冰川是东南部海平面上涨最大的贡献者。德曼的集水区包含相当于全球海平面1.5?M的冰块,坐在极光底座(ASB)中。这种盆地的地质证据对过去的温暖时期的敏感性,结合最近的观察结果,显示丹曼的冰速加速,其接地线沿着逆行坡撤退,提出了其对海平面上升的贡献可以加速的前景。在这项研究中,我们生产的第一个长期(〜50〜50岁)过去冰川行为(冰流速,冰舌结构和产犊),并将这些观察结果与数值模拟结合起来探索最近变化的可能驱动因素。我们发现自20世纪70年代以来,在其接地(17±4?%加速度; 1972-2017)和浮动部分(36±5?%加速; 1972-2017)。我们的数值模拟实验表明,在其最后一个主要的Calcing事件之后,丹曼冰舌的结合,冰舌变薄和丹曼的冰舌的销量需要模拟与观察结果相当的加速度。鉴于其床上地貌和丹曼冰川在过去撤退的地质证据,其最近的接地线撤退和冰流量加速表明它可能会在不久的将来对海平面进行重大贡献。

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