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Ocean forcing drives glacier retreat in Greenland

机译:海洋迫使驾驶冰川休息在格陵兰岛

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The retreat and acceleration of Greenland glaciers since the mid-1990s have been attributed to the enhanced intrusion of warm Atlantic Waters (AW) into fjords, but this assertion has not been quantitatively tested on a Greenland-wide basis or included in models. Here, we investigate how AW influenced retreat at 226 marine-terminating glaciers using ocean modeling, remote sensing, and in situ observations. We identify 74 glaciers in deep fjords with AW controlling 49% of the mass loss that retreated when warming increased undercutting by 48%. Conversely, 27 glaciers calving on shallow ridges and 24 in cold, shallow waters retreated little, contributing 15% of the loss, while 10 glaciers retreated substantially following the collapse of several ice shelves. The retreat mechanisms remain undiagnosed at 87 glaciers without ocean and bathymetry data, which controlled 19% of the loss. Ice sheet projections that exclude ocean-induced undercutting may underestimate mass loss by at least a factor of 2.
机译:自20世纪90年代中期以来,格陵兰冰川的撤退和加速归因于温暖大西洋水域(AW)进入峡湾的侵入,但这种断言尚未在格陵兰岛基础上定量测试或包括在模型中。在这里,我们研究了使用海洋建模,遥感和原位观察的226个海洋终端冰川在226个海洋终端冰川的撤退。我们在深峡湾中识别74个冰川,噢控制49%的质量损失,当升温增加了48%时退回。相反,在浅脊和24次寒冷的浅水区露出27个冰川,较少的损失,有助于15%的损失,而10次冰川在几个冰架的崩溃后大幅撤退。撤退机制在87个冰川中仍然未被曝光,没有海洋和沐浴性数据,其控制了19%的损失。排除海洋诱导的底切的冰盖投影可能低于至少2倍的质量损失。

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