Institute for Geophysics, The University of Texas at Austin, Austin, TX 78758, USA.
Geological Survey of Denmark and Greenland, Copenhagen DK-1350, Denmark.
Science. 2016 Feb 5;351(6273):590-3. doi: 10.1126/science.aab1702. Epub 2016 Feb 4.
Recent peripheral thinning of the Greenland Ice Sheet is partly offset by interior thickening and is overprinted on its poorly constrained Holocene evolution. On the basis of the ice sheet's radiostratigraphy, ice flow in its interior is slower now than the average speed over the past nine millennia. Generally higher Holocene accumulation rates relative to modern estimates can only partially explain this millennial-scale deceleration. The ice sheet's dynamic response to the decreasing proportion of softer ice from the last glacial period and the deglacial collapse of the ice bridge across Nares Strait also contributed to this pattern. Thus, recent interior thickening of the Greenland Ice Sheet is partly an ongoing dynamic response to the last deglaciation that is large enough to affect interpretation of its mass balance from altimetry.
近年来,格陵兰冰原的外周变薄现象部分被内部增厚所抵消,并且这种现象叠加在其约束较差的全新世演化上。基于冰原的放射性测年,其内部的冰流现在比过去九千年的平均速度慢。普遍较高的全新世积累率相对于现代估计值只能部分解释这种千年尺度的减速。冰原对来自上一个冰期的较软冰比例减少和纳雷斯海峡冰桥的冰崩的动态响应也促成了这种模式。因此,格陵兰冰原最近的内部增厚部分是对上一个冰消期的持续动态响应,其规模之大足以影响从测高法推断其质量平衡的解释。