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Recent increases in Arctic freshwater flux affects Labrador Sea convection and Atlantic overturning circulation

机译:北极淡水通量的最近增加影响了拉布拉多海对流和大西洋翻转环流

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The Atlantic Meridional Overturning Circulation (AMOC) is an important component of ocean thermohaline circulation. Melting of Greenland’s ice sheet is freshening the North Atlantic; however, whether the augmented freshwater flux is disrupting the AMOC is unclear. Dense Labrador Sea Water (LSW), formed by winter cooling of saline North Atlantic water and subsequent convection, is a key component of the deep southward return flow of the AMOC. Although LSW formation recently decreased, it also reached historically high values in the mid-1990s, making the connection to the freshwater flux unclear. Here we derive a new estimate of the recent freshwater flux from Greenland using updated GRACE satellite data, present new flux estimates for heat and salt from the North Atlantic into the Labrador Sea and explain recent variations in LSW formation. We suggest that changes in LSW can be directly linked to recent freshening, and suggest a possible link to AMOC weakening.
机译:大西洋子午翻转环流(AMOC)是海洋盐碱环流的重要组成部分。格陵兰岛冰盖融化正在使北大西洋变得新鲜。但是,尚不清楚增加的淡水通量是否正在破坏AMOC。由北大西洋咸水的冬季冷却和随后的对流形成的密集拉布拉多海水(LSW)是AMOC深南回流的关键组成部分。尽管LSW的形成最近有所减少,但在1990年代中期也达到了历史最高值,这使得与淡水通量的联系不清楚。在这里,我们使用更新的GRACE卫星数据得出了格陵兰岛最近的淡水通量的新估计值,给出了从北大西洋到拉布拉多海的热量和盐分的新通量估计值,并解释了LSW形成的最新变化。我们建议,LSW的变化可以直接与近期的新鲜度联系起来,并建议与AMOC减弱的可能联系。

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