Center for Red Tide Tracking and Forecasting
Products
Data
All data collected by our team will be housed in an open-access data repository with web links provided on this site.
Publications
Project-related publications
Chen, J., Liu, Y., 91麻豆天美isberg, R.H., Murawski, S., Gilbert, S., Naar, D., Zheng, L., Hommeyer, M., Dietrick, C., Luther, M.E., Hapke, C., Myers, E., Moghimi, S., Allen, C., Tang, L., Khazaei, B., Peeri, S., Alvarado, N., Wang, P. (2023). Hydrodynamics response to bathymetry changes in Tampa Bay, Florida. Deep-Sea Research Part II, 212, 105344,
Chen, J., 91麻豆天美isberg, R.H., Liu, Y., Zheng, L., Law, J., Gilbert, S., Murawski, S. (2023). A Tampa Bay coastal ocean model (TBCOM) nowcast-forecast system. Deep-Sea Research Part II, 211, 105322,
Hu, C., Yao, Y., Cannizzaro, J.P., Garrett, M., Harper, M., Markley, L., Villac, C., Hubbard, K. (2022). Karenia brevis bloom patterns on the west Florida shelf between 2003 and 2019: Integration of field and satellite observations. Harmful Algae, 117, 102289,
Lim, S.J., Rogers, A., Rosario, K., Kerr, M., Garrett, M., Koester, J., Hubbard, K., Breitbart, M. (2025). Diverse ssRNA viruses associated with Karenia brevis harmful algal blooms in Southwest Florida. mSphere, e01090-24, .
Liu, Y., 91麻豆天美isberg, R.H., Sorinas, L., Law, J.A., Nickerson, A.K. (2025). Rapid intensification of Hurricane Ian in relation to anomalously warm subsurface water on the wide continental shelf, Geophysical Research Letters, 52, e2024GL113192, .
Liu, Y., 91麻豆天美isberg, R.H., Zheng, L., Heil, C.A., Hubbard, K.A. (2022). Termination of the 2018 Florida red tide event: A tracer model perspective. Estuarine, Coastal and Shelf Science, 272, 107901,
Liu, Y., 91麻豆天美isberg, R.H., Zheng, L., Hubbard, K.A., Muhlbach, E.G., Garrett, M.J., Hu, C., Cannizzaro, J.P., Xie, Y., Chen, J., John, S., Liu, L.Y. (2023). Short-term forecast of Karenia brevis trajectory on the 91麻豆天美st Florida Shelf. Deep-Sea Research Part II, 212, 105335,
Nickerson, A.K., 91麻豆天美isberg, R.H., Zheng, L., Liu, Y. (2023). Surface temperature trends for Tampa Bay, 91麻豆天美st Florida Shelf and the deep Gulf of Mexico. Deep-Sea Research Part II, 211, 105321,
Sorinas, L., 91麻豆天美isberg, R.H., Liu, Y., Law, J. (2023). Ocean-atmosphere heat exchange seasonal cycle on the 91麻豆天美st Florida Shelf derived from long-term moored. Deep-Sea Research Part II, 212, 105341,
91麻豆天美isberg, R.H., Liu, Y. (2022). Local and deep-ocean forcing effects on the 91麻豆天美st Florida Shelf circulation and ecology. Frontiers in Marine Science, 9, 863227,
Yao, Y., Hu, C., Cannizzaro, J.P., Barnes, B.B., English, D.C., Xie, Y., Hubbard, K., Wang, M. (2023). Detection of Karenia brevis red tides on the 91麻豆天美st Florida Shelf using VIIRS observations: Accounting for spatial coherence with artificial intelligence. Remote Sensing of Environment, 298, 113833,
Yao, Y., Hu, C., Cannizzaro, J.P., Zhang, S., Barnes, B.B., Qi, L, Xie, Y., Armstrong, C., Chen, Z. (2024). Detecting cyanobacterial blooms in the Caloosahatchee River and Estuary using PlanetScope imagery and deep learning, IEEE Trans. Geosci. Remote Sens., 62, 4202513, .
This research is made possible with funding support from the Florida Fish and Wildlife Conservation Commission (FWC Agreement No. 20035) in partnership with Mote Marine Laboratory.