Article ID Journal Published Year Pages File Type
6388164 Ocean Modelling 2014 14 Pages PDF
Abstract

•We model the circulation in the Kerguelen region at 1/20° and 1/80° resolutions.•The strongest vertical velocities are found at the highest resolution.•The strongest vertical velocities are associated with sub-mesoscale structures.•Vertical transport and water sources are sensitive to the horizontal resolution.

The summertime phytoplankton bloom near the Kerguelen Plateau is in marked contrast to the low-chlorophyll conditions typical of the Southern Ocean and is thought to arise from natural iron fertilisation. The mechanisms of iron supply to the euphotic zone in this region are poorly understood, and numerical studies of iron transport have until now omitted fine-scale (sub-mesoscale) dynamics which have been shown to significantly increase vertical transport in other parts of the ocean.We present the first sub-mesoscale-resolving study of the flow and vertical transport in this region. The modelled transport and flow structure agree well with observations. We find that an increase in horizontal resolution from mesoscale-resolving (1/20°) to 1/80° resolves sub-mesoscale filamentary frontal structures in which vertical velocities are dramatically higher and are consistent with available observations. Lagrangian tracking shows that water is advected to the surface from much greater depth in the sub-mesoscale-resolving experiment, and that vertical exchange is far more rapid and frequent. This study of sub-mesoscale vertical velocities sets the foundation for subsequent investigation of iron transport in this environment.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Atmospheric Science
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