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          Title: 
            Regional Ocean Modeling System (ROMS): Samoa: Data Assimilating
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-02-11
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                Date_Type_Code: 
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                Date: 
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                        powellb@hawaii.edu
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        at approximately 3-km resolution. Boundary conditions provided by the 
        global, 1/12-degree (~9-km) HYbrid Coordinate Ocean Model (HYCOM). 
        Atmospheric forcing generated by the Weather Research and Forecasting 
        (WRF) model for the region surrounding the islands of Samoa 
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        days using all available observations to improve the model estimate of 
        current ocean state (its nowcast). Assimilated observations may 
        include satellite-based sea surface temperatures from MODIS, AVHRR, or 
        OSTIA; satellite-based sea surface height from AVISO; and in-situ 
        water temperature and salinity profiles from ARGO floats. While 
        considerable effort has been made to implement all model components in 
        a thorough, correct, and accurate manner, numerous sources of error 
        are possible. As such, please use these data with the caution 
        appropriate for any ocean related activity.
      Purpose: 
        PacIOOS provides timely, reliable, and accurate ocean information to 
        support a safe, clean, productive ocean and resilient coastal zone in 
        the U.S. Pacific Islands region.
      Credit: 
        The Pacific Islands Ocean Observing System (PacIOOS) is funded through 
        the National Oceanic and Atmospheric Administration (NOAA) as a 
        Regional Association within the U.S. Integrated Ocean Observing System 
        (IOOS). PacIOOS is coordinated by the University of Hawaii School of 
        Ocean and Earth Science and Technology (SOEST).
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            employees or contractors, makes any warranty, express or implied, 
            including warranties of merchantability and fitness for a 
            particular purpose, or assumes any legal liability for the 
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        global, 1/12-degree (~9-km) HYbrid Coordinate Ocean Model (HYCOM). 
        Atmospheric forcing generated by the Weather Research and Forecasting 
        (WRF) model for the region surrounding the islands of Samoa 
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        Oregon State University (OSU) Tidal Prediction Software (OTPS) 
        TOPEX/Poseidon global inverse solution (TPXO) to derive barotropic 
        tidal elevation and velocity. Data are assimilated over the previous 3 
        days using all available observations to improve the model estimate of 
        current ocean state (its nowcast). Assimilated observations may 
        include satellite-based sea surface temperatures from MODIS, AVHRR, or 
        OSTIA; satellite-based sea surface height from AVISO; and in-situ 
        water temperature and salinity profiles from ARGO floats. While 
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        assimilating hindcast for the region surrounding the islands of Samoa 
        at approximately 3-km resolution. Boundary conditions provided by the 
        global, 1/12-degree (~9-km) HYbrid Coordinate Ocean Model (HYCOM). 
        Atmospheric forcing generated by the Weather Research and Forecasting 
        (WRF) model for the region surrounding the islands of Samoa 
        (wrf_samoa) at approximately 3-km resolution. Tide forcing uses the 
        Oregon State University (OSU) Tidal Prediction Software (OTPS) 
        TOPEX/Poseidon global inverse solution (TPXO) to derive barotropic 
        tidal elevation and velocity. Data are assimilated over the previous 3 
        days using all available observations to improve the model estimate of 
        current ocean state (its nowcast). Assimilated observations may 
        include satellite-based sea surface temperatures from MODIS, AVHRR, or 
        OSTIA; satellite-based sea surface height from AVISO; and in-situ 
        water temperature and salinity profiles from ARGO floats. While 
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        at approximately 3-km resolution. Boundary conditions provided by the 
        global, 1/12-degree (~9-km) HYbrid Coordinate Ocean Model (HYCOM). 
        Atmospheric forcing generated by the Weather Research and Forecasting 
        (WRF) model for the region surrounding the islands of Samoa 
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        Oregon State University (OSU) Tidal Prediction Software (OTPS) 
        TOPEX/Poseidon global inverse solution (TPXO) to derive barotropic 
        tidal elevation and velocity. Data are assimilated over the previous 3 
        days using all available observations to improve the model estimate of 
        current ocean state (its nowcast). Assimilated observations may 
        include satellite-based sea surface temperatures from MODIS, AVHRR, or 
        OSTIA; satellite-based sea surface height from AVISO; and in-situ 
        water temperature and salinity profiles from ARGO floats. While 
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        global, 1/12-degree (~9-km) HYbrid Coordinate Ocean Model (HYCOM). 
        Atmospheric forcing generated by the Weather Research and Forecasting 
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        TOPEX/Poseidon global inverse solution (TPXO) to derive barotropic 
        tidal elevation and velocity. Data are assimilated over the previous 3 
        days using all available observations to improve the model estimate of 
        current ocean state (its nowcast). Assimilated observations may 
        include satellite-based sea surface temperatures from MODIS, AVHRR, or 
        OSTIA; satellite-based sea surface height from AVISO; and in-situ 
        water temperature and salinity profiles from ARGO floats. While 
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        a thorough, correct, and accurate manner, numerous sources of error 
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  Data_Quality_Information: 
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      Lineage: 
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            2015-05-28T00:00:00Z Model grid modified; aggregation now begins 
            at 2015-04-12T00:00:00Z.
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        This record was translated from NcML using UnidataDD2MI.xsl Version 2.3.