Wind Forced Variability in Eddy Formation, Eddy Shedding, and the Separation of the East Australian Current
Publication date
2017-12
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
taverne
Abstract
The East Australian Current (EAC), like many other subtropical western boundary currents, is believed to be penetrating further poleward in recent decades. Previous observational and model studies have used steady state dynamics to relate changes in the westerly winds to changes in the separation behavior of the EAC. As yet, little work has been undertaken on the impact of forcing variability on the EAC and Tasman Sea circulation. Here using an eddy-permitting regional ocean model, we present a suite of simulations forced by the same time-mean fields, but with different atmospheric and remote ocean variability. These eddy-permitting results demonstrate the nonlinear response of the EAC to variable, nonstationary inhomogeneous forcing. These simulations show an EAC with high intrinsic variability and stochastic eddy shedding. We show that wind stress variability on time scales shorter than 56 days leads to increases in eddy shedding rates and southward eddy propagation, producing an increased transport and southward reach of the mean EAC extension. We adopt an energetics framework that shows the EAC extension changes to be coincident with an increase in offshore, upstream eddy variance (via increased barotropic instability) and increase in subsurface mean kinetic energy along the length of the EAC. The response of EAC separation to regional variable wind stress has important implications for both past and future climate change studies.
Keywords
East Australian Current, Eddy formation, Ocean circulation, Ocean modeling, Western boundary currents, Wind forced variability, Taverne, Geophysics, Oceanography, Forestry, Aquatic Science, Ecology, Condensed Matter Physics, Water Science and Technology, Soil Science, Geochemistry and Petrology, Earth-Surface Processes, Physical and Theoretical Chemistry, Polymers and Plastics, Atmospheric Science, Earth and Planetary Sciences (miscellaneous), Space and Planetary Science, Materials Chemistry, Palaeontology, SDG 13 - Climate Action
Citation
Yit Sen Bull, C, Kiss, A E, Jourdain, N C, England, M H & van Sebille, E 2017, 'Wind Forced Variability in Eddy Formation, Eddy Shedding, and the Separation of the East Australian Current', Journal of Geophysical Research: Oceans, vol. 122, no. 12, pp. 9980-9998. https://doi.org/10.1002/2017JC013311