{
  "types": {
    "resourceTypeGeneral": "Dataset",
    "resourceType": "Lidar Data"
  },
  "identifiers": [
    {
      "identifierType": "DOI",
      "identifier": "https://doi.org/10.5069/G9VT1Q92"
    },
    {
      "identifierType": "URL",
      "identifier": "https://opentopography.org/datasetMetadata?otCollectionID=OT.062025.2193.1"
    }
  ],
  "creators": [
    {
      "nameType": "Organizational",
      "name": "OpenTopography",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://opentopography.org",
          "nameIdentifierScheme": "URL"
        },
        {
          "nameIdentifier": "info@opentopography.org",
          "nameIdentifierScheme": "EMAIL"
        }
      ]
    }
  ],
  "titles": [
    {
      "title": "Mount Ruapehu Summit Region and Rangataua Flows, New Zealand 2021",
      "lang": "en-US"
    }
  ],
  "publisher": "OpenTopography",
  "publicationYear": "2025",
  "contributors": [
    {
      "nameType": "Organizational",
      "name": "University of Canterbury",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://www.canterbury.ac.nz/research/about-uc-research/research-groups-and-centres/waterways-centre-for-freshwater-management",
          "nameIdentifierScheme": "URL"
        }
      ],
      "contributorType": "DataCollector"
    },
    {
      "nameType": "Organizational",
      "name": "Resilience to Nature\u0092s Challenges \u0096 Volcano Program",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://resiliencechallenge.nz/programme/volcanoes/",
          "nameIdentifierScheme": "URL"
        }
      ],
      "contributorType": "Sponsor"
    },
    {
      "nameType": "Organizational",
      "name": "University of Canterbury",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://www.canterbury.ac.nz/",
          "nameIdentifierScheme": "URL"
        }
      ],
      "contributorType": "ProjectMember"
    },
    {
      "nameType": "Organizational",
      "name": "GNS Science",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://www.gns.cri.nz/",
          "nameIdentifierScheme": "URL"
        }
      ],
      "contributorType": "ProjectMember"
    },
    {
      "nameType": "Organizational",
      "name": "OpenTopography",
      "nameIdentifiers": [
        {
          "nameIdentifier": "https://opentopography.org",
          "nameIdentifierScheme": "URL"
        },
        {
          "nameIdentifier": "info@opentopography.org",
          "nameIdentifierScheme": "EMAIL"
        }
      ],
      "contributorType": "Distributor"
    }
  ],
  "dates": [
    {
      "date": "2021-05-14/2021-11-02",
      "dateType": "Collected"
    },
    {
      "date": "2025-06-17",
      "dateType": "Issued"
    }
  ],
  "language": "en-US",
  "formats": [
    "Point Cloud Data"
  ],
  "rightsList": [
    {
      "rightsIdentifier": "CC BY 4.0",
      "rightsUri": "https://creativecommons.org/licenses/by/4.0/",
      "lang": "en-US"
    }
  ],
  "descriptions": [
    {
      "description": "<p>Lava flows carry a destructive power, and studies on past eruptions are necessary for improved hazard assessments. As part of a PhD project focused on improving our knowledge of the frequency and magnitude of postglacial lava flow eruptions, the Resilience to Nature\u0092s Challenges program, in a collaboration with the University of Canterbury and GNS Science, funded the acquisition of this high-resolution airborne lidar dataset, which was collected by the Waterways Centre for Freshwater Management (University of Canterbury). This dataset has been collected in order to produce DSMs covering the summit region of Mount Ruapehu (Aotearoa New Zealand), as well as a large lava flow towards the south of the volcano, which is densely vegetated. These DSMs allowed the identification of distinct lava flows, many of which were dated using cosmogenic 3He and paleomagnetism, and the estimation of lava flow volumes, leading to an improved understanding of the eruption rate variation at Ruapehu during the last 20,000 years.<\/p>  <p>The data were collected in two separate surveys; an initial survey on the 14th of May 2021 that covered most of the region but missed a significant area on the eastern flanks of Ruapehu Maunga. A second survey, on the 2nd of November 2021 attempted to infill areas missed by the original survey. The data is not classified and includes a significant amount of noise. It is provided as-is, with no additional processing or validation.<\/p>",
      "descriptionType": "Abstract",
      "lang": "en-US"
    }
  ],
  "geoLocations": [
    {
      "geoLocationBox": {
        "westBoundLongitude": "175.51476691606726",
        "eastBoundLongitude": "175.62178206204723",
        "southBoundLatitude": "-39.45036311284622",
        "northBoundLatitude": "-39.245783941015006"
      },
      "geoLocationPlace": "New Zealand"
    }
  ],
  "fundingReferences": [
    {
      "funderName": "National Science Foundation",
      "awardURI": "https://www.nsf.gov/awardsearch/showAward?AWD_ID=1948857",
      "awardNumber": "1948857",
      "awardTitle": "Collaborative Research: OpenTopography - A cyberinfrastructure facility for advancing geoscience research and education"
    },
    {
      "funderName": "National Science Foundation",
      "awardURI": "https://www.nsf.gov/awardsearch/showAward?AWD_ID=1948994",
      "awardNumber": "1948994",
      "awardTitle": "Collaborative Research: OpenTopography - A cyberinfrastructure facility for advancing geoscience research and education"
    },
    {
      "funderName": "National Science Foundation",
      "awardURI": "https://www.nsf.gov/awardsearch/showAward?AWD_ID=1948997",
      "awardNumber": "1948997",
      "awardTitle": "Collaborative Research: OpenTopography - A cyberinfrastructure facility for advancing geoscience research and education"
    }
  ],
  "schemaVersion": "http://datacite.org/schema/kernel-4"
}


