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Provedor de dados:  ArchiMer
País:  France
Título:  Observed Characteristics and Vertical Structure of Mesoscale Eddies in the Southwest Tropical Pacific
Autores:  Keppler, Lydia
Cravatte, Sophie
Chaigneau, Alexis
Pegliasco, Cori
Gourdeau, Lionel
Singh, Awnesh
Data:  2018-04
Ano:  2018
Palavras-chave:  Mesoscale eddies
Southwest Pacific
Argo floats
Satellite altimetry
Resumo:  In the Southwest Pacific Ocean, waters transit from the subtropical gyre before being redistributed equatorward and poleward. While the mean pathways are known, the contribution to the mixing and transport of the water from mesoscale eddies has not been comprehensively investigated. In this research, satellite altimetry data, combined with an eddy detection and tracking algorithm is used to investigate the distribution and surface characteristics of mesoscale eddies in this region of complex bathymetry (10 degrees S-30 degrees S, 140 degrees E-190 degrees E). Detected eddies are then colocalized with in situ data from Argo floats to determine their vertical structure and the effect of eddies on the water masses. The numerous islands affect the eddy behavior as most eddies are formed in the lee of islands, propagate westward and decay when encountering shallow bathymetry. Eddies are sparse and short-lived in the tropical area north of Fiji, impacting only the top 200 meters of water. They do not appear to be able to trap and transport waters in this region. In the Coral Sea, a region of lateral shear between currents transporting waters of different origins, eddies are more numerous and energetic. They affect the water properties down to at least 500 m depth, and anticyclonic eddies trap water to approximate to 200 m, contributing to the upper thermocline waters mixing and transport. South of New Caledonia, mesoscale eddies are ubiquitous, with typical lifetimes longer than 5 months. They affect the temperature, salinity, and velocities down to approximate to 1,000 m depth, and weakly contribute to the mixing of lower thermocline waters.
Tipo:  Text
Idioma:  Inglês
Identificador:  https://archimer.ifremer.fr/doc/00489/60039/63314.pdf

DOI:10.1002/2017JC013712

https://archimer.ifremer.fr/doc/00489/60039/
Editor:  Amer Geophysical Union
Formato:  application/pdf
Fonte:  Journal Of Geophysical Research-oceans (2169-9275) (Amer Geophysical Union), 2018-04 , Vol. 123 , N. 4 , P. 2731-2756
Direitos:  info:eu-repo/semantics/openAccess

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