Arctic Research Centre, Aarhus University, 8000, Aarhus, Denmark.
ClimateLab, Symbion Science Park, Fruebjergvej 3, 2100, Copenhagen O, Denmark.
Sci Rep. 2017 Jul 10;7(1):4941. doi: 10.1038/s41598-017-05089-3.
Rising temperatures in the Arctic cause accelerated mass loss from the Greenland Ice Sheet and reduced sea ice cover. Tidewater outlet glaciers represent direct connections between glaciers and the ocean where melt rates at the ice-ocean interface are influenced by ocean temperature and circulation. However, few measurements exist near outlet glaciers from the northern coast towards the Arctic Ocean that has remained nearly permanently ice covered. Here we present hydrographic measurements along the terminus of a major retreating tidewater outlet glacier from Flade Isblink Ice Cap. We show that the region is characterized by a relatively large change of the seasonal freshwater content, corresponding to ~2 m of freshwater, and that solar heating during the short open water period results in surface layer temperatures above 1 °C. Observations of temperature and salinity supported that the outlet glacier is a floating ice shelf with near-glacial subsurface temperatures at the freezing point. Melting from the surface layer significantly influenced the ice foot morphology of the glacier terminus. Hence, melting of the tidewater outlet glacier was found to be critically dependent on the retreat of sea ice adjacent to the terminus and the duration of open water.
北极地区气温上升导致格陵兰冰原的质量加速损失,海冰覆盖面积减少。潮汐出口冰川是冰川与海洋之间的直接连接,冰-海洋界面的融化率受海洋温度和环流的影响。然而,在北极地区常年被冰覆盖的北部海岸附近,几乎没有关于出口冰川的测量数据。在这里,我们展示了 Flade Isblink 冰帽主要后退的潮汐出口冰川末端的水文测量结果。我们表明,该地区的季节性淡水含量变化较大,对应约 2 米的淡水,并且在短暂的无冰期内太阳加热导致表层温度超过 1°C。温度和盐度的观测结果表明,出口冰川是一个浮冰架,具有接近冰点的冰川下表面温度。表层融化对冰川末端的冰脚形态有显著影响。因此,潮汐出口冰川的融化严重依赖于末端附近海冰的后退和无冰期的持续时间。