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Rapid circulation of warm subtropical waters in a major glacial fjord in East Greenland

机译:东格陵兰主要冰川峡湾中亚热带温暖水域的快速循环

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The recent rapid increase in mass loss from the Greenland ice sheet~(i1s prima,rily2 atribu)ted to an aceleration of outlet glaciers~(.53- One posible) cause of this aceleration is increased melting at the ice-ocean interface~(,6 driven, by7 the) synchronous warmine~(8-10)of subtropical waters ofshore Greenland. However, because of the lack of observations from Greenland's glacial fjords and our limited understanding of their dynamics, this hypothesis is largely untested. Here we present oceanographic data collected in Sermilik Fjord, East Greenland, by ship in summer 2008 and from moorings. Our data reveal the presence of subtropical waters throughout the fjord. These waters are continuously replenished through a wind-driven exchange with the shelf, where they are present all year. The temperature and renewal of these waters indicate that they currently cause enhanced submarine melting at the glacier terminus. Key controls on the melting rate are the volume and properties of the subtropical waters on the shelf, and the patterns of along-shore winds, suggesting that the glaciers' acceleration has been triggered by a combination of atmospheric and oceanic changes. Our measurements provide evidence for a rapid advective pathway for the transmission of oceanic variability to the ice-sheet margins.
机译:格陵兰岛冰原的质量损失近来迅速增加,这主要归因于出口冰川的加速(.53,一个可能的原因),这种加速的原因是冰洋界面处的融化增加了。 ,由6推动,由格陵兰近岸亚热带水域的同步暖水(8-10)。但是,由于缺乏格陵兰冰川峡湾的观测资料以及我们对它们的动态的有限了解,这一假设在很大程度上未经检验。在这里,我们介绍了2008年夏季乘船从系泊船在东格陵兰岛Sermilik峡湾采集的海洋学数据。我们的数据揭示了整个峡湾存在亚热带水域。这些水通过风交换与架子一起不断补充,这些架子常年存在。这些水的温度和更新表明,它们目前导致冰川末端的海底融化增加。融化速率的关键控制因素是架子上亚热带水的体积和性质,以及沿岸风的模式,这表明冰川的加速作用是由大气和海洋变化共同引发的。我们的测量结果为快速将海洋变率传递到冰盖边缘的对流路径提供了证据。

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