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<resTitle Sync="TRUE">Klamath_Centerline</resTitle>
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<fgdcGeoform>vector digital data</fgdcGeoform>
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<date>
<pubDate>2020-12-27</pubDate>
</date>
<citRespParty>
<rpOrgName>NV Geospatial</rpOrgName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>1100 NE Circle Blvd., Suite 126</delPoint>
<city>Corvallis</city>
<adminArea>OR</adminArea>
<postCode>97330</postCode>
<country>US</country>
</cntAddress>
<cntPhone>
<voiceNum tddtty="">541-752-1204</voiceNum>
</cntPhone>
<cntOnlineRes>
<linkage>http://www.quantumspatial.com</linkage>
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<displayName>NV Geospatial</displayName>
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<northBL Sync="TRUE">42.124101</northBL>
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</geoEle>
<exDesc>Upper Klamath River Digitized Centerline</exDesc>
<tempEle>
<TempExtent>
<exTemp>
<TM_Period>
<tmBegin>2020-09-22</tmBegin>
<tmEnd>2020-09-22</tmEnd>
</TM_Period>
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<idPurp>This shapefile is for routed stream centerlines for the Upper Klamath River in Oregon, California.</idPurp>
<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;P STYLE="margin:0 0 0 0;"&gt;&lt;SPAN&gt;This shapefile was created by manually digitizing the centerlines of the stream using the TIR mosaic. The centerlines are used in the procedure of sampling the longitudinal temperature profile of the streams in the Upper Klamath River survey area. The data is projected in UTM 10N and units are in meter. NV Geospatial Geospatial collected the Upper Klamath River TIR data for the EandS Environmental On 2020-09-22.&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;</idAbs>
<idCredit>EandS Environmental
NV Geospatial Inc</idCredit>
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<keyword>Aerial Thermal Infrared</keyword>
<keyword>TIR</keyword>
<keyword>Remote Sensing Data</keyword>
<keyword>Geoscientific Information</keyword>
<keyword>Environment</keyword>
<keyword>Digitized Cenerlines</keyword>
<keyword>Riverine Systems</keyword>
<keyword/>
<keyword>Klamath County and Siskiyou County</keyword>
<keyword>Oregon, California</keyword>
</searchKeys>
<themeKeys>
<keyword>Thermal Infrared</keyword>
<keyword>TIR</keyword>
<keyword>Digitized Ceneterline</keyword>
</themeKeys>
<placeKeys>
<keyword/>
<keyword>Oregon, California</keyword>
<keyword/>
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<suppInfo>This data is assembled by and projected in UTM 10N.</suppInfo>
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<resConst>
<LegConsts>
<useLimit>Please contact the EandS Environmental for information regarding the use of this data.</useLimit>
</LegConsts>
</resConst>
<idPoC>
<rpIndName>Todd McDonnell</rpIndName>
<rpOrgName>EandS Environmental</rpOrgName>
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<delPoint>2161 NW Fillmore Ave</delPoint>
<city>Corvallis</city>
<adminArea>OR</adminArea>
<postCode>97330</postCode>
<eMailAdd>todd.mcdonnell@esenvironmental.com</eMailAdd>
<country>US</country>
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<postCode>97330</postCode>
<eMailAdd>todd.mcdonnell@esenvironmental.com</eMailAdd>
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<city>Corvallis</city>
<adminArea>OR</adminArea>
<postCode>97330</postCode>
<country>US</country>
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<displayName>NV Geospatial</displayName>
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<measDesc>TIR data has been collected and processed for all areas within the project study area.</measDesc>
<evalMethDesc>Flight plans are designed with sufficient sidelap to ensure there are no gaps between flight lines. Images have been visually inspected for gaps. </evalMethDesc>
</report>
<dataLineage>
<prcStep>
<stepDesc>Acquisition. NV Geospatial collected the Upper Klamath River TIR data On 2020-09-22. The survey used a laser system mounted in a Bell 206 Long Ranger helicopter. Aircraft GPS and IMU were collected during the flight. FLIR SC6000 Instrument Parameters:
Speed: 60 knots,
Overlap: 60 %,
Field of view (FOV): 35.5°,
Frequency of GPS sampling: 2 Hz,
Frequency of IMU sampling: 200Hz,
Swath width: 300-500 m,
AGL: 400 m,
Resolution: 0.3
Please refer to the accompanied TIR report for details on the acquisition, processing and results of the data.</stepDesc>
<stepDateTm>2020-09-22</stepDateTm>
</prcStep>
</dataLineage>
<report dimension="" type="DQQuanAttAcc">
<measDesc>Thermal infrared imagery accuracy is assessed against ground truthing temperature data.</measDesc>
<evalMethDesc>Ground point data must be within 0.5° C of the radiometric calibration of the TIR images.</evalMethDesc>
</report>
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