Regional Versus Remote Atmosphere‐Ocean Drivers of the Rapid Projected Intensification of the East Australian Current

Author:

Bull Christopher Y. S.123ORCID,Kiss Andrew E.24ORCID,Gupta Alex Sen25ORCID,Jourdain Nicolas C.6ORCID,Argüeso Daniel7ORCID,Di Luca Alejandro25ORCID,Sérazin Guillaume25

Affiliation:

1. British Antarctic Survey Cambridge UK

2. ARC Centre of Excellence for Climate Extremes University of New South Wales Sydney Australia

3. Now at Department of Geography and Environmental Sciences Northumbria University Newcastle upon Tyne UK

4. Research School of Earth Sciences The Australian National University Canberra Australia

5. Climate Change Research Centre University of New South Wales Sydney Australia

6. University Grenoble Alpes/CNRS/IRD/G‐INP, IGE Grenoble France

7. Physics Department University of the Balearic Islands Palma Spain

Funder

Australian Research Council

Natural Environment Research Council

Publisher

American Geophysical Union (AGU)

Subject

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

Reference85 articles.

1. Amante C. &Eakins B. W.(2009).ETOPO1 1 arc‐minute global relief model: Procedures data sources and analysis.NOAA Technical Memorandum NESDIS NGDC‐24 (March) 19.https://doi.org/10.1594/PANGAEA.769615

2. On the Variability of the East Australian Current: Jet Structure, Meandering, and Influence on Shelf Circulation

3. The southward transport of sub-mesoscale lenses of Bass Strait Water in the centre of anti-cyclonic mesoscale eddies

4. Barnier B. Dussin R. &Molines J. M.(2011).Scientific validation report (ScVR) for V1 reprocessed analysis and reanalysis. WP 04 – GLO – CNRS_LEGI Grenoble.

5. Increase in Agulhas leakage due to poleward shift of Southern Hemisphere westerlies

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