Model:CBOFS2: Difference between revisions
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| | |ModelDomain=Marine | ||
|One-line model description=The Second Generation Chesapeake Bay Operational Forecast System (CBOFS2): A ROMS‐Based Modeling System | |One-line model description=The Second Generation Chesapeake Bay Operational Forecast System (CBOFS2): A ROMS‐Based Modeling System | ||
|Extended model description=This is a special case of the Regional Ocean Modeling System(ROMS). The National Ocean Service presently has an Operational Forecast System (CBOFS) for the Chesapeake Bay which generates only water levels and depth‐integrated currents. As a next generation system, a fully three‐dimensional, baroclinic Forecast System (CBOFS2) was developed, calibrated and validated; this system will produce water levels, currents, temperature and salinity. First, a two‐month tides only simulation was conducted to validate the water levels and currents and thereafter, a synoptic hindcast simulation from June 01, 2003–September 01, 2005 was conducted to validate water levels, currents, temperature and salinity. Upon comparison with observations, CBOFS2 for the most part met the target NOS water level error criteria and for current error, the criteria were met exceptionally well; the temperature and salinity errors were frequently less than 1 C and 3 PSU respectively. Hence, the predictive accuracy of CBOFS2 warranted it being accepted as a suitable three‐dimensional upgrade to CBOFS. | |Extended model description=This is a special case of the Regional Ocean Modeling System(ROMS). The National Ocean Service presently has an Operational Forecast System (CBOFS) for the Chesapeake Bay which generates only water levels and depth‐integrated currents. As a next generation system, a fully three‐dimensional, baroclinic Forecast System (CBOFS2) was developed, calibrated and validated; this system will produce water levels, currents, temperature and salinity. First, a two‐month tides only simulation was conducted to validate the water levels and currents and thereafter, a synoptic hindcast simulation from June 01, 2003–September 01, 2005 was conducted to validate water levels, currents, temperature and salinity. Upon comparison with observations, CBOFS2 for the most part met the target NOS water level error criteria and for current error, the criteria were met exceptionally well; the temperature and salinity errors were frequently less than 1 C and 3 PSU respectively. Hence, the predictive accuracy of CBOFS2 warranted it being accepted as a suitable three‐dimensional upgrade to CBOFS. | ||
Please see | Please see https://csdms.colorado.edu/wiki/Model:ROMS for details. | ||
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|Postal code=20901 | |Postal code=20901 | ||
|State=Maryland | |State=Maryland | ||
|Country= | |Country=United States | ||
|Email address=Lyon.Lanerolle@noaa.gov | |Email address=Lyon.Lanerolle@noaa.gov | ||
}} | }} | ||
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|Other platform=CygWin | |Other platform=CygWin | ||
|Programming language=Fortran90 | |Programming language=Fortran90 | ||
|Multiple processors implemented= | |||
|Nr of distributed processors= | |||
|Nr of shared processors= | |||
|Start year development=1998 | |Start year development=1998 | ||
|Does model development still take place?=No | |Does model development still take place?=No | ||
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|Other output format=NetCDF, CF-convections. | |Other output format=NetCDF, CF-convections. | ||
|Pre-processing software needed?=No | |Pre-processing software needed?=No | ||
|Describe pre-processing software= | |||
|Post-processing software needed?=Yes | |Post-processing software needed?=Yes | ||
|Describe post-processing software=Yes, ROMS I/O is via NetCDF and follows CF-standard conventions. Therefore, any visualization software for NetCDF files can be used for pre- and post-processing. | |Describe post-processing software=Yes, ROMS I/O is via NetCDF and follows CF-standard conventions. Therefore, any visualization software for NetCDF files can be used for pre- and post-processing. | ||
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{{CSDMS staff part | {{CSDMS staff part | ||
|OpenMI compliant=No but possible | |OpenMI compliant=No but possible | ||
|IRF interface=Yes | |||
|CMT component=No but possible | |||
|CCA component=Yes | |CCA component=Yes | ||
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==Introduction== | ==Introduction== | ||
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== References == | == References == | ||
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== Issues == | == Issues == |
Latest revision as of 19:18, 16 September 2020
CBOFS2
Metadata
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Introduction
History
References
Nr. of publications: | 7 |
Total citations: | 7780 |
h-index: | 7 |
m-quotient: | 0.23 |
Featured publication(s) | Year | Model described | Type of Reference | Citations |
---|---|---|---|---|
Lanerolle, L.W.J.; Patchen, R.C.; Aikman III, F.; 2011. The Second Generation Chesapeake Bay Operational Forecast System (CBOFS2): Model Development and Skill Assessment.. . (View/edit entry) | 2011 | CBOFS2 |
Model overview | 17 |
Haidvogel, D.B.; Arango, H.; Budgell, W.P.; Cornuelle, B.D.; Curchitser, E.; Di Lorenzo, E.; Fennel, K.; Geyer, W.R.; Hermann, A.J.; Lanerolle, L.; Levin, J.; McWilliams, J.C.; Miller, A.J.; Moore, A.M.; Powell, T.M.; Shchepetkin, A.F.; Sherwood, C.R.; Signell, R.P.; Warner, J.C.; Wilkin, J.; 2008. Ocean forecasting in terrain-following coordinates: Formulation and skill assessment of the Regional Ocean Modeling System. Journal of Computational Physics, 227, 3595–3624. 10.1016/j.jcp.2007.06.016 (View/edit entry) | 2008 | CBOFS2 ChesROMS ROMS UMCESroms |
Model overview | 1200 |
Shchepetkin, Alexander F.; McWilliams, James C.; 2005. The regional oceanic modeling system (ROMS): a split-explicit, free-surface, topography-following-coordinate oceanic model. Ocean Modelling, 9, 347–404. 10.1016/j.ocemod.2004.08.002 (View/edit entry) | 2005 | CBOFS2 ChesROMS ROMS UMCESroms |
Model application | 4222 |
Song, Yuhe; Haidvogel, Dale; 1994. A Semi-implicit Ocean Circulation Model Using a Generalized Topography-Following Coordinate System. Journal of Computational Physics, 115, 228–244. 10.1006/jcph.1994.1189 (View/edit entry) | 1994 | CBOFS2 ChesROMS ROMS UMCESroms |
Model overview | 819 |
See more publications of CBOFS2 |