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海洋循环导致东北亚极地大西洋东部 120 年来最大的淡水化事件。

Ocean circulation causes the largest freshening event for 120 years in eastern subpolar North Atlantic.

机构信息

National Oceanography Centre, Southampton, UK.

Institute of Oceanography, University of Hamburg, Hamburg, Germany.

出版信息

Nat Commun. 2020 Jan 29;11(1):585. doi: 10.1038/s41467-020-14474-y.

Abstract

The Atlantic Ocean overturning circulation is important to the climate system because it carries heat and carbon northward, and from the surface to the deep ocean. The high salinity of the subpolar North Atlantic is a prerequisite for overturning circulation, and strong freshening could herald a slowdown. We show that the eastern subpolar North Atlantic underwent extreme freshening during 2012 to 2016, with a magnitude never seen before in 120 years of measurements. The cause was unusual winter wind patterns driving major changes in ocean circulation, including slowing of the North Atlantic Current and diversion of Arctic freshwater from the western boundary into the eastern basins. We find that wind-driven routing of Arctic-origin freshwater intimately links conditions on the North West Atlantic shelf and slope region with the eastern subpolar basins. This reveals the importance of atmospheric forcing of intra-basin circulation in determining the salinity of the subpolar North Atlantic.

摘要

大西洋翻转环流对气候系统很重要,因为它将热量和碳向北输送,并从表层输送到深海。亚极地北大西洋的高盐度是翻转环流的先决条件,而强烈的淡化可能预示着速度的减缓。我们表明,2012 年至 2016 年期间,亚极地北大西洋东部经历了极端的淡化,其强度在 120 年的测量中前所未有。造成这种情况的原因是不寻常的冬季风模式导致海洋环流发生重大变化,包括北大西洋暖流的减缓以及北极淡水从西部边界转向东部盆地。我们发现,风驱动的北极淡水的路由将北大西洋西北部陆架和斜坡区域的条件与亚极地东部盆地紧密联系在一起。这表明大气对内盆地环流的强迫在确定亚极地北大西洋的盐度方面非常重要。

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