Published/In-Press

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  • [7] Xue, Z., J. B. Zambon, Z. Yao, Y. Liu, and R. He, in press. An Integrated ocean circulation, wave, atmosphere and marine ecosystem prediction system for the South Atlantic Bight and Gulf of Mexico. Journal of Operational Oceanography, 1-12, doi:10.1080/1755876X.2015.1014667.
  • [6] Zambon, J. B., 2014. Air-sea interaction during landfalling tropical and extra-tropical cyclones. Ph.D. dissertation submitted to North Carolina State University, 201pp.
  • [5] Zambon, J. B., R. He, and J. C. Warner, 2014. Tropical to extratropical: Marine environmental changes associated with Superstorm Sandy prior to its landfall. Geophysical Research Letters, 2014GL061357, doi:10.1002/2014GL061357.
  • [4] Zambon, J. B., R. He, and J. C. Warner, 2014. Investigation of Hurricane Ivan using the coupled ocean–atmosphere–wave–sediment transport (COAWST) model. Ocean Dynamics, 64, 1535–1554, doi:10.1016/j.ocemod.2011.12.008.
  • [3] Olabarrieta, M., J. C. Warner, B. Armstrong, J. B. Zambon, and R. He, 2012. Ocean–atmosphere dynamics during Hurricane Ida and Nor’Ida: An application of the coupled ocean–atmosphere–wave–sediment transport (COAWST) modeling system. Ocean Modelling, 43-44(C), 112–137, doi:10.1016/j.ocemod.2011.12.008.
  • [2] Warner, J. C., B. Armstrong, R. He, and J. B. Zambon, 2010. Development of a coupled ocean–atmosphere–wave–sediment transport (COAWST) modeling system. Ocean Modelling, 35(3), 230–244, doi:10.1016/j.ocemod.2010.07.010.
  • [1] Zambon, J. B. (2009). An Examination of Tropical Cyclone Dynamics Utilizing the 3-Way Coupled Ocean Atmosphere Wave Sediment Transport (COAWST) Model. M.S. Thesis submitted to North Carolina State University, 140pp.

In-Review/To Be Submitted

  • Yao, Z., R. He, Z. Xue, J. B. Zambon, and Y. Liu, An Integrated 3D-Coupled Ocean Circulation, Wave, and Atmosphere N/F system developed for the U.S. East, Gulf of Mexico and Intra-Americas Sea. To be submitted to Computers and Geosciences