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      Individual_Name: 
        Charles H. Fletcher
      Organisation_Name: 
        University of Hawaii at Manoa
      Contact_Information: 
        Contact: 
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            Address: 
              Electronic_Mail_Address: 
                fletcher@soest.hawaii.edu
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  Date_Stamp: 
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  Metadata_Standard_Version: 
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    Data_Identification: 
      Citation: 
        Citation: 
          Title: 
            Sea Level Rise Inundation: 1-ft Scenario: Honolulu, Hawaii
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  creation
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  issued
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  revision
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            Identifier: 
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                Citation: 
                  Title: 
                    org.pacioos
                  Date: 
              Code: 
                hi_csp_hono_slr1ft
          Cited_Responsible_Party: 
            Responsible_Party: 
              Individual_Name: 
                Charles H. Fletcher
              Organisation_Name: 
                University of Hawaii at Manoa
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        fletcher@soest.hawaii.edu
                  Online_Resource: 
                    Online_Resource: 
                      Linkage: 
                        URL: 
                          https://www.soest.hawaii.edu/soestwp/about/directory/chip-h-fletcher/
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              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        uhsgcomm@hawaii.edu
                  Online_Resource: 
                    Online_Resource: 
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                        URL: 
                          https://seagrant.soest.hawaii.edu
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                        http
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              Organisation_Name: 
                Pacific Islands Ocean Observing System (PacIOOS)
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        info@pacioos.org
                  Online_Resource: 
                    Online_Resource: 
                      Linkage: 
                        URL: 
                          http://pacioos.org
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                        http
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      Abstract: 
        This map shows coastal flooding around Honolulu, Hawaii due to 1 foot 
        (0.305 m) of sea level rise. This scenario was derived using a 
        National Geospatial Agency (NGA)-provided digital elevation model 
        (DEM) based on LiDAR data of the Honolulu area collected in 2009. This 
        "bare earth" DEM (vegetation and structures removed) was used to 
        represent the current topography of the study area above zero 
        elevation for the urban corridor stretching from Honolulu 
        International Airport to Waikiki and Diamond Head along the south 
        shore of Oahu. The accuracy of the DEM was validated using a selection 
        of 16 Tidal Benchmarks located within the study area. The single value 
        tidal water surface of mean higher high water (MHHW) modeled at the 
        Honolulu tide gauge was used to represent sea level for the purposes 
        of this study. Water levels are shown as they would appear during the 
        highest high tides (excluding wind-driven tides).
        
        Data produced in 2014 by Dr. Charles "Chip" Fletcher of the department 
        of Geology & Geophysics (G&G) in the School of Ocean and Earth Science 
        and Technology (SOEST) of the University of Hawaii at Manoa. Supported 
        in part by the NOAA Coastal Storms Program (CSP) and the University of 
        Hawaii Sea Grant College Program. These data do not consider future 
        changes in coastal geomorphology and natural processes such as 
        erosion, subsidence, or future construction. These data do not specify 
        timing of inundation depths and are not appropriate for conducting 
        detailed spatial analysis. The entire risk associated with the results 
        and performance of these data is assumed by the user. These data 
        should be used strictly as a planning reference and not for 
        navigation, permitting, or other legal purposes.
      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).
      Point_Of_Contact: 
        Responsible_Party: 
          Individual_Name: 
            Charles H. Fletcher
          Organisation_Name: 
            University of Hawaii at Manoa
          Contact_Information: 
            Contact: 
              Address: 
                Address: 
                  Electronic_Mail_Address: 
                    fletcher@soest.hawaii.edu
              Online_Resource: 
                Online_Resource: 
                  Linkage: 
                    URL: 
                      https://www.soest.hawaii.edu/soestwp/about/directory/chip-h-fletcher/
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      Descriptive_Keywords: 
        Keywords: 
          Keyword: 
            Earth Science > Climate Indicators > Atmospheric/Ocean Indicators 
            > Sea Level Rise > Inundation
          Keyword: 
            Earth Science > Oceans > Coastal Processes > Sea Level Rise
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          Keyword: 
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            Oahu > Honolulu
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                GCMD Project Keywords
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          Type: 
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          Thesaurus_Name: 
            Citation: 
              Title: 
                GCMD Data Center Keywords
              Date: 
      Resource_Constraints: 
        Legal_Constraints: 
          Use_Limitation: 
            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.
      Aggregation_Information: 
        Aggregate_Information: 
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                Pacific Islands Ocean Observing System (PacIOOS)
              Date: 
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      Topic_Category: 
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      Citation: 
        Citation: 
          Title: 
            Sea Level Rise Inundation: 1-ft Scenario: Honolulu, Hawaii
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  creation
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  issued
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
                  revision
          Cited_Responsible_Party: 
            Responsible_Party: 
              Individual_Name: 
                Charles H. Fletcher
              Organisation_Name: 
                University of Hawaii at Manoa
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        fletcher@soest.hawaii.edu
                  Online_Resource: 
                    Online_Resource: 
                      Linkage: 
                        URL: 
                          https://www.soest.hawaii.edu/soestwp/about/directory/chip-h-fletcher/
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                Pacific Islands Ocean Observing System (PacIOOS)
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        info@pacioos.org
                  Online_Resource: 
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                        URL: 
                          http://pacioos.org
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                        http
                      Application_Profile: 
                        web browser
                      Name: 
                      Description: 
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      Abstract: 
        This map shows coastal flooding around Honolulu, Hawaii due to 1 foot 
        (0.305 m) of sea level rise. This scenario was derived using a 
        National Geospatial Agency (NGA)-provided digital elevation model 
        (DEM) based on LiDAR data of the Honolulu area collected in 2009. This 
        "bare earth" DEM (vegetation and structures removed) was used to 
        represent the current topography of the study area above zero 
        elevation for the urban corridor stretching from Honolulu 
        International Airport to Waikiki and Diamond Head along the south 
        shore of Oahu. The accuracy of the DEM was validated using a selection 
        of 16 Tidal Benchmarks located within the study area. The single value 
        tidal water surface of mean higher high water (MHHW) modeled at the 
        Honolulu tide gauge was used to represent sea level for the purposes 
        of this study. Water levels are shown as they would appear during the 
        highest high tides (excluding wind-driven tides).
        
        Data produced in 2014 by Dr. Charles "Chip" Fletcher of the department 
        of Geology & Geophysics (G&G) in the School of Ocean and Earth Science 
        and Technology (SOEST) of the University of Hawaii at Manoa. Supported 
        in part by the NOAA Coastal Storms Program (CSP) and the University of 
        Hawaii Sea Grant College Program. These data do not consider future 
        changes in coastal geomorphology and natural processes such as 
        erosion, subsidence, or future construction. These data do not specify 
        timing of inundation depths and are not appropriate for conducting 
        detailed spatial analysis. The entire risk associated with the results 
        and performance of these data is assumed by the user. These data 
        should be used strictly as a planning reference and not for 
        navigation, permitting, or other legal purposes.
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      Citation: 
        Citation: 
          Title: 
            Sea Level Rise Inundation: 1-ft Scenario: Honolulu, Hawaii
          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
              Date_Type: 
                Date_Type_Code: 
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          Date: 
            Date: 
              Date: 
                Date: 
                  2014-09-26
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              Date: 
                Date: 
                  2014-09-26
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              Individual_Name: 
                Charles H. Fletcher
              Organisation_Name: 
                University of Hawaii at Manoa
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        fletcher@soest.hawaii.edu
                  Online_Resource: 
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                          https://www.soest.hawaii.edu/soestwp/about/directory/chip-h-fletcher/
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                Pacific Islands Ocean Observing System (PacIOOS)
              Contact_Information: 
                Contact: 
                  Address: 
                    Address: 
                      Electronic_Mail_Address: 
                        info@pacioos.org
                  Online_Resource: 
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                      Linkage: 
                        URL: 
                          http://pacioos.org
                      Protocol: 
                        http
                      Application_Profile: 
                        web browser
                      Name: 
                      Description: 
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                          information
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      Abstract: 
        This map shows coastal flooding around Honolulu, Hawaii due to 1 foot 
        (0.305 m) of sea level rise. This scenario was derived using a 
        National Geospatial Agency (NGA)-provided digital elevation model 
        (DEM) based on LiDAR data of the Honolulu area collected in 2009. This 
        "bare earth" DEM (vegetation and structures removed) was used to 
        represent the current topography of the study area above zero 
        elevation for the urban corridor stretching from Honolulu 
        International Airport to Waikiki and Diamond Head along the south 
        shore of Oahu. The accuracy of the DEM was validated using a selection 
        of 16 Tidal Benchmarks located within the study area. The single value 
        tidal water surface of mean higher high water (MHHW) modeled at the 
        Honolulu tide gauge was used to represent sea level for the purposes 
        of this study. Water levels are shown as they would appear during the 
        highest high tides (excluding wind-driven tides).
        
        Data produced in 2014 by Dr. Charles "Chip" Fletcher of the department 
        of Geology & Geophysics (G&G) in the School of Ocean and Earth Science 
        and Technology (SOEST) of the University of Hawaii at Manoa. Supported 
        in part by the NOAA Coastal Storms Program (CSP) and the University of 
        Hawaii Sea Grant College Program. These data do not consider future 
        changes in coastal geomorphology and natural processes such as 
        erosion, subsidence, or future construction. These data do not specify 
        timing of inundation depths and are not appropriate for conducting 
        detailed spatial analysis. The entire risk associated with the results 
        and performance of these data is assumed by the user. These data 
        should be used strictly as a planning reference and not for 
        navigation, permitting, or other legal purposes.
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                PNG, SVG, and TIFF. Supported info formats include GeoJSON, 
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