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Deglacial grounding-line retreat in the Ross Embayment Antarctica controlled by ocean and atmosphere forcing

机译:在海洋和大气强迫的控制下南极罗斯河退缩地线撤退

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摘要

Modern observations appear to link warming oceanic conditions with Antarctic ice sheet grounding-line retreat. Yet, interpretations of past ice sheet retreat over the last deglaciation in the Ross Embayment, Antarctica’s largest catchment, differ considerably and imply either extremely high or very low sensitivity to environmental forcing. To investigate this, we perform regional ice sheet simulations using a wide range of atmosphere and ocean forcings. Constrained by marine and terrestrial geological data, these models predict earliest retreat in the central embayment and rapid terrestrial ice sheet thinning during the Early Holocene. We find that atmospheric conditions early in the deglacial period can enhance or diminish ice sheet sensitivity to rising ocean temperatures, thereby controlling the initial timing and spatial pattern of grounding-line retreat. Through the Holocene, however, grounding-line position is much more sensitive to subshelf melt rates, implicating ocean thermal forcing as the key driver of past ice sheet retreat.
机译:现代观察似乎将变暖的海洋条件与南极冰盖着陆线撤退联系在一起。然而,对南极洲最大集水区Ross Embayment内最后一次冰消后过去冰盖退缩的解释差异很大,这意味着对环境强迫的敏感性极高或极低。为了对此进行研究,我们使用各种大气和海洋强迫进行了区域冰盖模拟。受海洋和陆地地质数据的约束,这些模型预测了全新世早期中央退缩的最早退缩和陆地冰盖的迅速变薄。我们发现,冰期初期的大气条件可以增强或减少冰盖对海洋温度升高的敏感性,从而控制着接地线后退的初始时间和空间格局。然而,通过全新世,地线位置对子架融化速率更加敏感,这意味着海洋热强迫是过去冰盖退缩的主要驱动力。

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