Abstract
Using data from Argo floats, satellite altimetry, and satellite sea surface temperature (SST), we investigate the merging of two anti-cyclonic eddies in the Tasman Sea. The eddies are of different size and different density. Once the distance between the eddies falls below a critical separation distance, water from the smaller, denser eddy is observed to flow around the larger, lighter eddy, sink to greater than 400 m depth, and slowly spiral toward the eddy-center. The merging event is characterized by filaments around the eddy perimeter, evident in high-resolution, satellite SST data. The merged eddy develops multiple well-mixed layers, each almost 400 m thick, with large anomalies in temperature and salinity that penetrate to about 1,000 m depth. After the merging is complete, water from the lighter eddy is stacked on top of water from the denser eddy. Using a simple conceptual model, we show that the merged profiles can be simply explained by subduction of surface waters from the denser eddy, and mixing with subsurface waters from the lighter eddy. The stacked eddy has a distinct signature in TS-space. Using this TS-signature, together with altimetry for context, we identify over 20 other examples when Argo floats sample stacked eddies in the Tasman Sea. We speculate that merged eddies may be more common than previously thought, with implications for ocean productivity, underwater acoustics, and the transfer of energy across scales.
Cite
CITATION STYLE
Rykova, T., & Oke, P. R. (2022). Stacking of EAC Eddies Observed From Argo. Journal of Geophysical Research: Oceans, 127(8). https://doi.org/10.1029/2022JC018679
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.