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            Related publication: Yamazaki, Y., Kowalik, Z. and Cheung, K.F. 
            (2009), Depth-integrated, non-hydrostatic model for wave breaking 
            and run-up. Int. J. Numer. Meth. Fluids, 61: 473-497. 
            https://doi.org/10.1002/fld.1952.
      Abstract: 
        Non-hydrostatic Evolution of Ocean WAVEs (NEOWAVE) regional tsunami 
        model for adjacent Agana and Tumon Bays along the northwest shore of 
        the island of Guam, categorized by earthquake magnitude and subduction 
        zone. Offshore data are gridded at approximately 90-m resolution while 
        in-harbor data are approximately 9-m resolution. Includes offshore 
        surge and current based on maximum considered tsunamis as well as 
        in-harbor hazard maps of surge, drawdown, and current for hypothetical 
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        Mariana, Nankai, Philippine, and New Guinea subduction zones. Data are 
        referenced to the WGS84 coordinate system, and the vertical datum is 
        mean sea level (MSL). This shock-capturing, dispersive wave model 
        computes tsunami generation, propagation, and inundation for complex 
        flow patterns in shelf and reef environments. It has been validated 
        with analytical, laboratory, and field benchmarks and is approved by 
        the National Tsunami Hazard Mitigation Program. These hazard maps 
        cover tsunamis only; other potential hazards such as wind waves and 
        swells would be additive to the surge, drawdown, and current described 
        by these data.
      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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        the island of Guam, categorized by earthquake magnitude and subduction 
        zone. Offshore data are gridded at approximately 90-m resolution while 
        in-harbor data are approximately 9-m resolution. Includes offshore 
        surge and current based on maximum considered tsunamis as well as 
        in-harbor hazard maps of surge, drawdown, and current for hypothetical 
        advisory and warning-level tsunamis from potential sources at the 
        Mariana, Nankai, Philippine, and New Guinea subduction zones. Data are 
        referenced to the WGS84 coordinate system, and the vertical datum is 
        mean sea level (MSL). This shock-capturing, dispersive wave model 
        computes tsunami generation, propagation, and inundation for complex 
        flow patterns in shelf and reef environments. It has been validated 
        with analytical, laboratory, and field benchmarks and is approved by 
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        the island of Guam, categorized by earthquake magnitude and subduction 
        zone. Offshore data are gridded at approximately 90-m resolution while 
        in-harbor data are approximately 9-m resolution. Includes offshore 
        surge and current based on maximum considered tsunamis as well as 
        in-harbor hazard maps of surge, drawdown, and current for hypothetical 
        advisory and warning-level tsunamis from potential sources at the 
        Mariana, Nankai, Philippine, and New Guinea subduction zones. Data are 
        referenced to the WGS84 coordinate system, and the vertical datum is 
        mean sea level (MSL). This shock-capturing, dispersive wave model 
        computes tsunami generation, propagation, and inundation for complex 
        flow patterns in shelf and reef environments. It has been validated 
        with analytical, laboratory, and field benchmarks and is approved by 
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        zone. Offshore data are gridded at approximately 90-m resolution while 
        in-harbor data are approximately 9-m resolution. Includes offshore 
        surge and current based on maximum considered tsunamis as well as 
        in-harbor hazard maps of surge, drawdown, and current for hypothetical 
        advisory and warning-level tsunamis from potential sources at the 
        Mariana, Nankai, Philippine, and New Guinea subduction zones. Data are 
        referenced to the WGS84 coordinate system, and the vertical datum is 
        mean sea level (MSL). This shock-capturing, dispersive wave model 
        computes tsunami generation, propagation, and inundation for complex 
        flow patterns in shelf and reef environments. It has been validated 
        with analytical, laboratory, and field benchmarks and is approved by 
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        zone. Offshore data are gridded at approximately 90-m resolution while 
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        in-harbor hazard maps of surge, drawdown, and current for hypothetical 
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        Mariana, Nankai, Philippine, and New Guinea subduction zones. Data are 
        referenced to the WGS84 coordinate system, and the vertical datum is 
        mean sea level (MSL). This shock-capturing, dispersive wave model 
        computes tsunami generation, propagation, and inundation for complex 
        flow patterns in shelf and reef environments. It has been validated 
        with analytical, laboratory, and field benchmarks and is approved by 
        the National Tsunami Hazard Mitigation Program. These hazard maps 
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        swells would be additive to the surge, drawdown, and current described 
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                  Function: 
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          Distributor_Transfer_Options: 
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                  Protocol: 
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          Distributor_Transfer_Options: 
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  Data_Quality_Information: 
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          Hierarchy_Level: 
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      Lineage: 
        Lineage: 
          Statement: 
            2019-07-25T00:00:00Z New dataset.
            2020-02-19T00:00:00Z Added to PacIOOS data servers.
  Metadata_Maintenance: 
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      Maintenance_Note: 
        This record was translated from NcML using UnidataDD2MI.xsl Version 2.3.