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      Individual_Name: 
        Kwok Fai Cheung
      Organisation_Name: 
        University of Hawaii at Manoa
      Contact_Information: 
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                cheung@hawaii.edu
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      Citation: 
        Citation: 
          Title: 
            NEOWAVE Regional Tsunami Model: South Hawaii PMT: Hawaii: Hawaii 
            Island: South Point
          Date: 
            Date: 
              Date: 
                Date: 
                  2022-05-06
              Date_Type: 
                Date_Type_Code: 
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            Date: 
              Date: 
                Date: 
                  2022-05-06
              Date_Type: 
                Date_Type_Code: 
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            Date: 
              Date: 
                Date: 
                  2022-05-06
              Date_Type: 
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            Identifier: 
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                    org.pacioos
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              Individual_Name: 
                Kwok Fai Cheung
              Organisation_Name: 
                University of Hawaii at Manoa
              Contact_Information: 
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                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        cheung@hawaii.edu
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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 the southern point of Hawaii Island in the State of Hawaii, 
        stretching from beyond Kailikii Beach in the west to Kau Forest 
        Reserve in the east and including South Point Park and Mahana Bay. 
        Provides a nearshore hazard map of inundation based on the South 
        Hawaii Probable Maximum Tsunami (PMT) scenario. Data are gridded at 
        approximately 30-m resolution referenced to the WGS84 coordinate 
        system and use a vertical datum of 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 inundation 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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            Kwok Fai Cheung
          Organisation_Name: 
            University of Hawaii at Manoa
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            The data may be used and redistributed for free but is not 
            intended for legal use, since it may contain inaccuracies. Neither 
            the data Contributor, University of Hawaii, PacIOOS, NOAA, State 
            of Hawaii nor the United States Government, nor any of their 
            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 
            accuracy, completeness, or usefulness, of this information.
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              Date: 
                Date: 
                  2022-05-06
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            Date: 
              Date: 
                Date: 
                  2022-05-06
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              Date: 
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                  2022-05-06
              Date_Type: 
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                Kwok Fai Cheung
              Organisation_Name: 
                University of Hawaii at Manoa
              Contact_Information: 
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                      Electronic_Mail_Address: 
                        cheung@hawaii.edu
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        Non-hydrostatic Evolution of Ocean WAVEs (NEOWAVE) regional tsunami 
        model for the southern point of Hawaii Island in the State of Hawaii, 
        stretching from beyond Kailikii Beach in the west to Kau Forest 
        Reserve in the east and including South Point Park and Mahana Bay. 
        Provides a nearshore hazard map of inundation based on the South 
        Hawaii Probable Maximum Tsunami (PMT) scenario. Data are gridded at 
        approximately 30-m resolution referenced to the WGS84 coordinate 
        system and use a vertical datum of 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 
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              Date: 
                Date: 
                  2022-05-06
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      Abstract: 
        Non-hydrostatic Evolution of Ocean WAVEs (NEOWAVE) regional tsunami 
        model for the southern point of Hawaii Island in the State of Hawaii, 
        stretching from beyond Kailikii Beach in the west to Kau Forest 
        Reserve in the east and including South Point Park and Mahana Bay. 
        Provides a nearshore hazard map of inundation based on the South 
        Hawaii Probable Maximum Tsunami (PMT) scenario. Data are gridded at 
        approximately 30-m resolution referenced to the WGS84 coordinate 
        system and use a vertical datum of 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 
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              Date: 
                Date: 
                  2022-05-06
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        model for the southern point of Hawaii Island in the State of Hawaii, 
        stretching from beyond Kailikii Beach in the west to Kau Forest 
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        Provides a nearshore hazard map of inundation based on the South 
        Hawaii Probable Maximum Tsunami (PMT) scenario. Data are gridded at 
        approximately 30-m resolution referenced to the WGS84 coordinate 
        system and use a vertical datum of 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 
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