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Improved Fine-Scale Transport Model Performance Using Auv And Hsi Feedback In A Tidally Dominated System, L. F. Hibler, A. R. Maxwell, L. M. Miller, N. P. Kohn, D. L. Woodruff, M. J. Montes, J. H. Bowles, Mark A. Moline
Improved Fine-Scale Transport Model Performance Using Auv And Hsi Feedback In A Tidally Dominated System, L. F. Hibler, A. R. Maxwell, L. M. Miller, N. P. Kohn, D. L. Woodruff, M. J. Montes, J. H. Bowles, Mark A. Moline
Biological Sciences
One of the challenges for model prediction and validation is providing them with data of appropriate spatial and temporal resolution. The maturation and increased application of autonomous underwater vehicles (AUVs) in aquatic environments allows systematic data collection on these model-relevant scales. The goal of this study was to apply a fine-scale circulation and transport model (Delft3D) to improve AUV mission planning and use data collected by the AUV to evaluate and improve model performance. A dye release was conducted in a tidally dominated embayment, and a planning phase model based on the best available data was used as a baseline …