<!DOCTYPE qgis PUBLIC 'http://mrcc.com/qgis.dtd' 'SYSTEM'>
<qgis version="3.18.1-Zürich">
  <identifier>/vsicurl/https://rmbl-sdp.s3.us-east-2.amazonaws.com/data_products/draft/UG_landcover_1m_v4.tif</identifier>
  <parentidentifier></parentidentifier>
  <language>en</language>
  <type>dataset</type>
  <title>Basic Landcover Map for the Upper Gunnison Domain Derived from NAIP Imagery and LiDAR</title>
  <abstract>This is 1 meter resolution landcover map developed for the RMBL Spatial Data Platform. Source datasets include 2017 and 2019 4-band imagery from the National Aerial Imagery Program, and 2019 LiDAR data collected by Quantum Geospatial for the Colorado Hazard Mapping Program.

The numeric codes for the dataset area as follows:

1=evergreen trees and shrubs
2=deciduous trees greater than 2m tall
3=meadow, grassland and subshrub
4=persistent open water
5=persistent snow and ice
6=rock, bare soil, and sparse vegetation
7=building or structure
8=paved or other impervious surface
9=irrigated pasture and other cultivated lands
10=deciduous shrubs up to 2m tall
11=evergreen forest understory and small gap
12=deciduous forest understory and small gap

</abstract>
  <keywords vocabulary="gmd:topicCategory">
    <keyword>Environment</keyword>
    <keyword>Geoscientific Information</keyword>
    <keyword>Inland Waters</keyword>
    <keyword>Society</keyword>
  </keywords>
  <contact>
    <name>Ian Breckheimer</name>
    <organization>Rocky Mountain Biological Laboratory</organization>
    <position>Research Scientist</position>
    <voice></voice>
    <fax></fax>
    <email>ikb@rmbl.org</email>
    <role>owner</role>
  </contact>
  <links>
    <link description="Spatial Data Platform Description" url="https://rmbl.org/data" type="WWW:LINK" format="" mimeType="" size="" name="URL"/>
  </links>
  <fees></fees>
  <license>Creative Commons Attribution 4.0</license>
  <encoding></encoding>
  <crs>
    <spatialrefsys>
      <wkt>PROJCRS["WGS 84 / UTM zone 13N",BASEGEOGCRS["WGS 84",DATUM["World Geodetic System 1984",ELLIPSOID["WGS 84",6378137,298.257223563,LENGTHUNIT["metre",1]]],PRIMEM["Greenwich",0,ANGLEUNIT["degree",0.0174532925199433]],ID["EPSG",4326]],CONVERSION["UTM zone 13N",METHOD["Transverse Mercator",ID["EPSG",9807]],PARAMETER["Latitude of natural origin",0,ANGLEUNIT["degree",0.0174532925199433],ID["EPSG",8801]],PARAMETER["Longitude of natural origin",-105,ANGLEUNIT["degree",0.0174532925199433],ID["EPSG",8802]],PARAMETER["Scale factor at natural origin",0.9996,SCALEUNIT["unity",1],ID["EPSG",8805]],PARAMETER["False easting",500000,LENGTHUNIT["metre",1],ID["EPSG",8806]],PARAMETER["False northing",0,LENGTHUNIT["metre",1],ID["EPSG",8807]]],CS[Cartesian,2],AXIS["(E)",east,ORDER[1],LENGTHUNIT["metre",1]],AXIS["(N)",north,ORDER[2],LENGTHUNIT["metre",1]],USAGE[SCOPE["unknown"],AREA["World - N hemisphere - 108°W to 102°W - by country"],BBOX[0,-108,84,-102]],ID["EPSG",32613]]</wkt>
      <proj4>+proj=utm +zone=13 +datum=WGS84 +units=m +no_defs</proj4>
      <srsid>3097</srsid>
      <srid>32613</srid>
      <authid>EPSG:32613</authid>
      <description>WGS 84 / UTM zone 13N</description>
      <projectionacronym>utm</projectionacronym>
      <ellipsoidacronym>EPSG:7030</ellipsoidacronym>
      <geographicflag>false</geographicflag>
    </spatialrefsys>
  </crs>
  <extent>
    <spatial miny="4256064" maxx="388086" dimensions="2" minz="0" minx="305082" maxz="0" crs="EPSG:32613" maxy="4328667"/>
    <temporal>
      <period>
        <start>2019-08-02T20:52:01Z</start>
        <end>2019-10-01T00:00:00Z</end>
      </period>
    </temporal>
  </extent>
</qgis>
