Vertical Velocity Dynamics in the North Atlantic and Implications for AMOC

Author:

Fraser Neil J.1,Fox Alan D.1,Cunningham Stuart A.12,Rath Willi3,Schwarzkopf Franziska U.3,Biastoch Arne34

Affiliation:

1. a The Scottish Association for Marine Science, Oban, United Kingdom

2. b University of the Highlands and Islands, Inverness, United Kingdom

3. c GEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, Germany

4. d Kiel University, Kiel, Germany

Abstract

Abstract The Atlantic meridional overturning circulation (MOC) is traditionally monitored in terms of zonally integrated transport either in depth space or in density space. While this view has the advantage of simplicity, it obscures the rich and complex three-dimensional structure, so that the exact physics of the downwelling and upwelling branch remains poorly understood. The near-equivalence of the depth- and density-space MOC in the subtropics suggests that vertical and diapycnal volumes transports are intimately coupled, whereas the divergence of these two metrics at higher latitudes indicates that any such coupling is neither instantaneous nor local. Previous work has characterized the surface buoyancy forcing and mixing processes which drive diapycnal volume transport. Here, we develop a new analytical decomposition of vertical volume transport based on the vorticity budget. We show that most terms can be estimated from observations and provide additional insights from a high-resolution numerical simulation of the North Atlantic. Our analysis highlights the roles of 1) relative vorticity advection for the sinking of overflow water at the northern subpolar North Atlantic boundaries and 2) the geostrophic β effect for the sinking of dense waters in the intergyre region. These results provide insights into the coupling between density- and depth-space overturning circulations. Significance Statement The purpose of this study is to better understand where and why dense water sinks in the North Atlantic. This is important because dense water sinking in the North Atlantic is a crucial component of the global thermohaline circulation. Our results reveal the primary controls on dense water sinking at a regional level and highlight the importance of mesoscale processes at high latitudes in shaping the circulation and heat distribution throughout the Atlantic Ocean.

Funder

Natural Environment Research Council

Horizon 2020 Framework Programme

Bundesministerium für Bildung und Forschung

Publisher

American Meteorological Society

Reference46 articles.

1. A diagnostic model of the Nordic seas and Arctic Ocean circulation: Quantifying the effects of a variable bottom density along a sloping topography;Aaboe, S.,2008

2. Future strengthening of the Nordic seas overturning circulation;Årthun, M.,2023

3. Regional imprints of changes in the Atlantic meridional overturning circulation in the eddy-rich ocean model VIKING20X;Biastoch, A.,2021

4. Decadal changes in Atlantic overturning due to the excessive 1990s Labrador Sea convection;Böning, C. W.,2023

5. Dynamics of downwelling in an eddying marginal sea: Contrasting the Eulerian and the isopycnal perspective;Brüggemann, N.,2019

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