Time scales of the Greenland Freshwater Anomaly in the Subpolar North Atlantic

Author:

Dukhovskoy D.S.1,Yashayaev I.2,Chassignet E.P.1,Myers P.G.3,Platov G.4,Proshutinsky A.5

Affiliation:

1. 1 Center for Ocean-Atmospheric Prediction Studies, Florida State University, Tallahassee, FL, USA.

2. 2 Bedford Institute of Oceanography, Fisheries and Oceans, Dartmouth, Nova Scotia, Canada.

3. 3 Department of Earth and Atmospheric Sciences, University of Alberta, University of Alberta, Edmonton, AB T6G 2E3, Canada.

4. 4 Institute of Computational Mathematics and Mathematical Geophysics, Novosibirsk, Russia.

5. 5 Woods Hole Oceanographic Institution, Woods Hole, MA, USA

Abstract

AbstractThe impact of increasing Greenland freshwater discharge on the subpolar North Atlantic (SPNA) remains unknown as there are uncertainties associated with the time scales of the Greenland freshwater anomaly (GFWA) in the SPNA. Results from numerical simulations tracking GFWA and an analytical approach are employed to estimate the response time suggesting a decadal time scale (13 years) required for the SPNA to adjust for increasing GFWA. Analytical solutions obtained for a long-lasting increase of freshwater discharge show a non-steady state response of the SPNA with increasing content of the GFWA. In contrast, solutions for a short-lived pulse of freshwater demonstrate different responses of the SPNA with a rapid increase of freshwater in the domain followed by an exponential decay after the pulse has passed. Derived theoretical relation between time scales show that residence time scales are time-dependent for a non-steady state case and asymptote the response time scale with time. Residence time of the GFWA deduced from Lagrangian experiments is close to and smaller than the response time, in agreement with the theory. The Lagrangian analysis shows dependence of the residence time on the entrance route of the GFWA and on the depth. The fraction of the GFWA exported through Davis Strait has limited impact on the interior basins, whereas the fraction entering the SPNA from the southwest Greenland shelf spreads into the interior regions. In both cases, the residence time of the GFWA increases with depth demonstrating long persistence of the freshwater anomaly in the subsurface layers.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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