Vertical Vorticity Balance in Meanders Downstream the Agulhas Retroflection
نویسندگان
چکیده
منابع مشابه
Ocean–Atmosphere Interaction over Agulhas Extension Meanders
Many years of high-resolution measurements by a number of space-based sensors and from Lagrangian drifters became available recently and are used to examine the persistent atmospheric imprints of the semipermanent meanders of the Agulhas Extension Current (AEC), where strong surface current and temperature gradients are found. The sea surface temperature (SST) measured by the Advanced Microwave...
متن کاملIndian-atlantic transfer of thermocline water at the agulhas retroflection.
During November and December 1983, two anticyclonic eddies were observed west of the Agulhas Retroflection, apparently spawned at the retroflection. The western eddy, centered 300 kilometers southwest of Cape Town, has a winter cooled core encircled by warm Indian Ocean water. Between Cape Town and the "Cape Town Eddy" is a net geostrophic transport of Indian Ocean thermocline water (14 x 10(6)...
متن کاملOn the fast decay of Agulhas rings
[1] The Indian Ocean water that ends up in the Atlantic Ocean detaches from the Agulhas Current retroflection predominantly in the form of Agulhas rings and cyclones. Using numerical Lagrangian float trajectories in a high‐resolution numerical ocean model, the fate of coherent structures near the Agulhas Current retroflection is investigated. It is shown that within the Agulhas Current, upstrea...
متن کاملThe Influence of Vertical Vorticity on Thermal Convection
The single-mode equations of Boussinesq thermal convection have been modified to include the vertical component of vorticity, which has led, in certain parameter ranges, to a new family of solutions for stationary convection in the absence of external constraints. The features of these solutions are discussed and a comparison with the family of solutions possessing zero vertical vorticity, whic...
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ژورنال
عنوان ژورنال: Journal of Physical Oceanography
سال: 2007
ISSN: 1520-0485,0022-3670
DOI: 10.1175/jpo3064.1