Labrador sea water spreading and the Atlantic meridional overturning circulation

被引:5
作者
Le Bras, Isabela Alexander-Astiz [1 ]
机构
[1] Woods Hole Oceanog Inst, Dept Phys Oceanog, Woods Hole, MA 02543 USA
来源
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES | 2023年 / 381卷 / 2262期
基金
美国国家科学基金会; 美国国家航空航天局;
关键词
deep ocean circulation; high-latitude oceanography; water mass analysis; ocean dynamics; WESTERN BOUNDARY CURRENT; SUBPOLAR NORTH-ATLANTIC; DEEP-WATER; THERMOHALINE CIRCULATION; INTERIOR PATHWAYS; SOUTH ATLANTIC; SURFACE HEAT; OCEAN; VARIABILITY; VENTILATION;
D O I
10.1098/rsta.2022.0189
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In 1982, Talley and McCartney used the low potential vorticity signature of Labrador Sea Water (LSW) to make the first North Atlantic maps of its properties. Forty years later, our understanding of LSW variability, spreading time scales and importance has deepened. In this review and synthesis article, I showcase recent observational advances in our understanding of how LSW spreads from its formation regions into the Deep Western Boundary Current and southward into the subtropical North Atlantic. I reconcile the fact that decadal variability in LSW formation is reflected in the Deep Western Boundary Current with the fact that LSW formation does not control subpolar overturning strength and discuss hypothesized connections between LSW spreading and decadal Atlantic Meridional Overturning Circulation variability. Ultimately, LSW spreading is of fundamental interest because it is a significant pathway for dissolved gasses such as oxygen and carbon dioxide into the deep ocean. We should hence prioritize adding dissolved gas measurements to standard hydrographic and circulation observations, particularly at targeted western boundary locations.This article is part of a discussion meeting issue 'Atlantic overturning: new observations and challenges'.
引用
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页数:16
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