Coquereau Arthur, Foukal Nicholas P, Våge Kjetil
Laboratoire d'Océanographie Physique et Spatiale, Univ. Brest, CNRS, IRD, Ifremer, IUEM, Brest, France.
Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA.
Sci Adv. 2024 Nov 15;10(46):eadp9266. doi: 10.1126/sciadv.adp9266. Epub 2024 Nov 13.
The coastal circulation around Southern Greenland transports fresh, buoyant water masses from the Arctic and Greenland Ice Sheet near regions of convection, sinking, and deep-water formation in the Irminger and Labrador Seas. Here, we track the pathways and fate of these fresh water masses by initializing synthetic particles in the East Greenland Coastal Current on the Southeast Greenland shelf and running them through altimetry-derived surface currents from 1993 to 2021. We report that the majority of waters (83%) remain on the shelf around the southern tip of Greenland. Variability in the shelf-basin exchange of the remaining particles closely follows the number of tip jet wind events on seasonal and interannual timescales. The probability of a particle exiting the shelf increases almost fivefold during a tip jet event. These results indicate that the number of tip jets is a close proxy of the shelf-basin exchange around Southern Greenland.
格陵兰岛南部周围的沿岸环流将来自北极和格陵兰冰原的淡水、浮力水体输送到厄勒海峡和拉布拉多海对流、下沉和深水形成的附近区域。在此,我们通过在格陵兰岛东南部陆架上的东格陵兰沿岸流中初始化合成粒子,并让它们通过1993年至2021年的测高仪衍生表面流,追踪这些淡水水体的路径和归宿。我们报告称,大部分水体(83%)仍留在格陵兰岛南端周围的陆架上。其余粒子在陆架 - 海盆交换中的变化在季节和年际时间尺度上紧密跟随尖端急流风事件的数量。在尖端急流事件期间,一个粒子离开陆架的概率增加近五倍。这些结果表明,尖端急流的数量是格陵兰岛南部周围陆架 - 海盆交换的密切指标。