Greenland freshwater pathways in the sub‐ A rctic S eas from model experiments with passive tracers

Author:

Dukhovskoy Dmitry S.1,Myers Paul G.2,Platov Gennady34,Timmermans Mary‐Louise5,Curry Beth6,Proshutinsky Andrey7,Bamber Jonathan L.8,Chassignet Eric1,Hu Xianmin2,Lee Craig M.6,Somavilla Raquel9

Affiliation:

1. Center for Ocean‐Atmospheric Prediction StudiesFlorida State UniversityTallahassee Florida USA

2. Department of Earth and Atmospheric SciencesUniversity of Alberta, University of AlbertaEdmontonAB T6G 2E3 Canada

3. Institute of Computational Mathematics and Mathematical GeophysicsNovosibirsk Russia

4. Department of Mathematical GeophysicsNovosibirsk State UniversityNovosibirsk Russia

5. Department of Geology and GeophysicsYale UniversityNew Haven Connecticut USA

6. Applied Physics LaboratoryUniversity of WashingtonSeattle Washington USA

7. Department of Physical OceanographyWoods Hole Oceanographic Institution, Mail Stop 29/218B Clark LaboratoryWoods Hole Massachusetts USA

8. Bristol Glaciology Centre, School of Geographical SciencesUniversity of BristolUniversity RoadBristol UK

9. Centro Oceanográfico de GijónInstituto Español de OceanografiaMadridSpain

Funder

NSERC

RFBR

NSF

Publisher

American Geophysical Union (AGU)

Subject

Earth and Planetary Sciences (miscellaneous),Space and Planetary Science,Geochemistry and Petrology,Geophysics,Oceanography

Reference122 articles.

1. Thermohaline circulation in the Arctic Mediterranean Seas

2. Estimating sea ice area flux across the Canadian Arctic Archipelago using enhanced AMSR-E

3. Amante C. andB. W.Eakins(2009) ETOPO1 1 Arc‐Minute Global Relief Model: Procedures Data Sources and Analysis NOAA Technical Memorandum NESDIS NGDC‐24 Nat. Geo. Data. Cent. NOAA doi:10.7289/V5C8276M.

4. A Cross-calibrated, Multiplatform Ocean Surface Wind Velocity Product for Meteorological and Oceanographic Applications

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