Presentation Information

[340605-09-01]NOAA’s STOFS 2D+ Global: A multi-scale multi-process global high resolution water level model incorporating thermohaline circulation and hydrology through heterogeneous model coupling

*Joannes Jacobus Westerink1, Aman Tejaswi1, Damrongsak Wirasaet1, Albert Cerrone1, Coleman Blakely2, Maria Teresa Contreras3, Guoming Ling4, Dylan Wood5, Zach Cobell6, Clint Dawson7, Shintaro Bunya8, Edward Myers9, Saeed Moghimi9, Greg Seroka9, Yuji Funakoshi9, Liujuan Tang9, Margaret Owensby10, Chris Massey10 (1. Dept of Civil and Environmnetal Engineering and Earth Sciences, University of Notre Dame, Notre Dame IN, USA, 2. Argonne National Laboratory, Lemont IL, USA, 3. Los Alamos National Laboratory, Los Alamos NM, USA, 4. Kyushu University, Kyushu, Japan, 5. Applied Research Associates, Albuquerque NM, USA, 6. Water Institute of the Gulf, Baton Rouge LA, USA, 7. University of Texas at Austin, Austin TX, USA, 8. University of North Carolina at Chapel Hill, Chapel Hill NC, USA, 9. NOAA/NOS/Office of Coast Survey/Coast Survey Development Laboratory, Silver Spring MD, USA, 10. U.S. Army Engineer Research and Development Center, Vicksburg MS, USA)

Keywords:

storm surge,tides,simulation