Surface current variability in the East Australian Current from long-term high-frequency radar observations

0Citations
Citations of this article
6Readers
Mendeley users who have this article in their library.

Abstract

The East Australian Current (EAC) exhibits significant variability across a wide range of spatial and temporal scales, from mesoscale eddies and meanders to seasonal, interannual, and long-term fluctuations in its intensity, pathway, and influence on the continental shelf circulation. Understanding and monitoring this variability is crucial, as the EAC plays an important role in controlling shelf dynamics, regional circulation, coastal weather, and global climate patterns. As such, two high-frequency (HF) coastal radar systems have been deployed on the eastern coast of Australia to measure surface currents upstream and downstream of the East Australian Current (EAC) separation point. The multiyear radar dataset (spanning 4-8 years) is presented here, and its use is demonstrated to assess the spatial and temporal variability in the EAC and the adjacent continental shelf circulation, ranging from seasonal to interannual scales. The dataset is gap-filled using a 2dVar approach (after rigorous comparison with the traditional unweighted least-squares (LS) fit method). Additionally, we explore the representation of the depth variability in the observations by comparing the data with surface Lagrangian drifter velocities (with and without depth drogues). The multiyear radar-derived surface current dataset, which was validated using short-term drifter and long-term current meter observations, revealed that the local upstream circulation is strongly dominated by the EAC's annual cycle, peaking in the austral summer. The analysis using 8 years of upstream data revealed the period of the EAC intensification at around 3-5 years. The interannual variability in the poleward transport downstream was driven by the intrinsic variability in the jet. This dataset which continues to be collected, complemented by numerical simulations and in situ measurements, will provide a comprehensive view of the EAC's variability and its impact on the broader regional circulation dynamics that can be used for a range of dynamical investigations. The datasets are freely available at https://doi.org/10.5281/zenodo.13984639 .

Cite

CITATION STYLE

APA

Tran, M. C., Roughan, M., & Schaeffer, A. (2025). Surface current variability in the East Australian Current from long-term high-frequency radar observations. Earth System Science Data, 17(3), 937–963. https://doi.org/10.5194/essd-17-937-2025

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free