Salinity Trends within the Upper Layers of the Subpolar North Atlantic
Examination of a range of salinity products collectively suggests widespread freshening of the North Atlantic from the mid-2000s to the present. Monthly salinity fields reveal negative trends that differ in magnitude and significance between western and eastern regions of the North Atlantic. These d...
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Published in | Journal of climate Vol. 31; no. 7; pp. 2675 - 2698 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Boston
American Meteorological Society
01.04.2018
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Subjects | |
Online Access | Get full text |
ISSN | 0894-8755 1520-0442 |
DOI | 10.1175/jcli-d-17-0532.1 |
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Abstract | Examination of a range of salinity products collectively suggests widespread freshening of the North Atlantic from the mid-2000s to the present. Monthly salinity fields reveal negative trends that differ in magnitude and significance between western and eastern regions of the North Atlantic. These differences can be attributed to the large negative interannual excursions in salinity in the western subpolar gyre and the Labrador Sea, which are not apparent in the central or eastern subpolar gyre. This study demonstrates that temporal trends in salinity in the northwest (including the Labrador Sea) are subject to mechanisms that are distinct from those responsible for the salinity trends in the central and eastern North Atlantic. In the western subpolar gyre a negative correlation between near-surface salinity and the circulation strength of the subpolar gyre suggests that negative salinity anomalies are connected to an intensification of the subpolar gyre, which is causing increased flux of freshwater from the East Greenland Current and subsequent transport into the Labrador Sea during the melting season. Analyses of sea surface wind fields suggest that the strength of the subpolar gyre is linked to the North Atlantic Oscillation– and Arctic Oscillation–driven changes in wind stress curl in the eastern subpolar gyre. If this trend of decreasing salinity continues, it has the potential to enhance water column stratification, reduce vertical fluxes of nutrients, and cause a decline in biological production and carbon export in the North Atlantic Ocean. |
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AbstractList | Examination of a range of salinity products collectively suggests widespread freshening of the North Atlantic from the mid-2000s to the present. Monthly salinity fields reveal negative trends that differ in magnitude and significance between western and eastern regions of the North Atlantic. These differences can be attributed to the large negative interannual excursions in salinity in the western subpolar gyre and the Labrador Sea, which are not apparent in the central or eastern subpolar gyre. This study demonstrates that temporal trends in salinity in the northwest (including the Labrador Sea) are subject to mechanisms that are distinct from those responsible for the salinity trends in the central and eastern North Atlantic. In the western subpolar gyre a negative correlation between near-surface salinity and the circulation strength of the subpolar gyre suggests that negative salinity anomalies are connected to an intensification of the subpolar gyre, which is causing increased flux of freshwater from the East Greenland Current and subsequent transport into the Labrador Sea during the melting season. Analyses of sea surface wind fields suggest that the strength of the subpolar gyre is linked to the North Atlantic Oscillation- and Arctic Oscillation-driven changes in wind stress curl in the eastern subpolar gyre. If this trend of decreasing salinity continues, it has the potential to enhance water column stratification, reduce vertical fluxes of nutrients, and cause a decline in biological production and carbon export in the North Atlantic Ocean. |
Author | Gordon, Arnold L. Abernathey, Ryan P. Haine, Thomas W. N. Goes, Joaquim I. Tesdal, Jan-Erik |
Author_xml | – sequence: 1 givenname: Jan-Erik surname: Tesdal fullname: Tesdal, Jan-Erik organization: Lamont-Doherty Earth Observatory, Columbia University, Palisades, New York – sequence: 2 givenname: Ryan P. surname: Abernathey fullname: Abernathey, Ryan P. organization: Lamont-Doherty Earth Observatory, Columbia University, Palisades, New York – sequence: 3 givenname: Joaquim I. surname: Goes fullname: Goes, Joaquim I. organization: Lamont-Doherty Earth Observatory, Columbia University, Palisades, New York – sequence: 4 givenname: Arnold L. surname: Gordon fullname: Gordon, Arnold L. organization: Lamont-Doherty Earth Observatory, Columbia University, Palisades, New York – sequence: 5 givenname: Thomas W. N. surname: Haine fullname: Haine, Thomas W. N. organization: Department of Earth and Planetary Sciences, The Johns Hopkins University, Baltimore, Maryland |
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Snippet | Examination of a range of salinity products collectively suggests widespread freshening of the North Atlantic from the mid-2000s to the present. Monthly... |
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SubjectTerms | Anomalies Arctic Oscillation Atmospheric forcing Biological production Curl (vectors) Density stratification Fluxes Freshwater Heat Hydrologic cycle Hydrology Inland water environment Mineral nutrients North Atlantic Oscillation Nutrients Observatories Ocean-atmosphere system Oceanography Oceans Precipitation Salinity Salinity effects Sea surface Stratification Surface salinity Surface wind Temperature (air-sea) Trends Vertical distribution Water column Water stratification Wind fields Wind stress Wind stress curl |
Title | Salinity Trends within the Upper Layers of the Subpolar North Atlantic |
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