Article ID Journal Published Year Pages File Type
5766382 Ocean Modelling 2017 14 Pages PDF
Abstract

•OSCAR, altimetry and drifters are assimilated into ROMS.•Drifter velocity assimilation significantly improves Lagrangian skill.•The addition of altimetry/OSCAR may just as likely degrade the forecast as improve.•This combination improves the forecast more likely for stronger currents.•Conversely, degrades the forecast for weaker currents.

The ocean current predictability in the data limited Angola Basin was investigated using the Regional Ocean Modelling System (ROMS) with four-dimensional variational data assimilation. Six experiments were undertaken comprising a baseline case of the assimilation of salinity/temperature profiles and satellite sea surface temperature, with the subsequent addition of altimetry, OSCAR (satellite-derived sea surface currents), drifters, altimetry and drifters combined, and OSCAR and drifters combined. The addition of drifters significantly improves Lagrangian predictability in comparison to the baseline case as well as the addition of either altimetry or OSCAR. OSCAR assimilation only improves Lagrangian predictability as much as altimetry assimilation. On average the assimilation of either altimetry or OSCAR with drifter velocities does not significantly improve Lagrangian predictability compared to the drifter assimilation alone, even degrading predictability in some cases. When the forecast current speed is large, it is more likely that the combination improves trajectory forecasts. Conversely, when the currents are weaker, it is more likely that the combination degrades the trajectory forecast.

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