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These are two land cover datasets derived from Landsat Thematic Mapper and Operational Land Imager (spatial resolution 30-m)Path 014 and Rows 032 and 033 surface reflectance data collected on July 14, 2011 and July 19, 2013, before and after Hurricane Sandy made landfall near Brigantine, New Jersey on October 29, 2012. The two land cover data sets provide a means of evaluating the effect of Hurricane Sandy of data sets collected at times that represent or approach peak vegetation growth. The most accurate results of the land cover classification are based on twelve classes, some of which occur adjacent to the marshes but not on the New Jersey intracoastal marshes. Twelve classes were used in the supervised maximum...
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Separate data for floodplain elevation and bathymetry were collected on the Upper Mississippi River System (UMRS) by the US Army Corps of Engineers (USACE), Upper Mississippi River Restoration (UMRR) program. While many information needs can be met by using these data separately, in many cases seamless elevation data across the river and its floodplain are needed. This seamless elevation surface was generated by merging lidar (i.e., floodplain elevation) and bathymetry data. Merging the data required special processing in the areas of transition between the two sources of data.
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Separate data for floodplain elevation and bathymetry were collected on the Upper Mississippi River System (UMRS) by the US Army Corps of Engineers (USACE), Upper Mississippi River Restoration (UMRR) program. While many information needs can be met by using these data separately, in many cases seamless elevation data across the river and its floodplain are needed. This seamless elevation surface was generated by merging lidar (i.e., floodplain elevation) and bathymetry data. Merging the data required special processing in the areas of transition between the two sources of data.
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This dataset contains a bare earth digital elevation model (DEM), with a 0.5-square-meter (m2) cell size, of the Cottonwood Lake Study Area, Stutsman County, North Dakota. The DEM was based primarily on airborne lidar data acquired by Fugro Horizons of Rapid City, South Dakota, and made into a DEM by USGS personnel using the ArcGIS extension LP360 (QCoherent Software, 2013). Additional DEM processing to incorporate the bathymetry of study wetlands was done using survey-grade global positioning system (GPS) data collected by soundings of the bottom of each wetland. Through these steps, a continuous elevation model representing both the surrounding uplands and wetland basins was produced for the site (Mushet and Scherff...


map background search result map search result map UMRR Pool 15 Topobathy UMRR Pool 16 Topobathy Land cover classification dataset Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T4 from 1982 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T8 from 1982 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T8 from 1984 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T4 from 1986 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T5 from 1986 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P6 from 18 July 1990 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T9 from 1991 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P8 from 10 August 1992 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P11 from 2004 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P7 from 2006 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands P1 and T1 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands P6 and P7 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands T8 and T9 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P3 from 2012 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T1 from 2014 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P11 from 2015 Cottonwood Lake Study Area – Digital Elevation Model with Topobathy Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T4 from 1982 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T4 from 1986 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T5 from 1986 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T8 from 1982 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T8 from 1984 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T9 from 1991 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P8 from 10 August 1992 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland T1 from 2014 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P6 from 18 July 1990 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands T8 and T9 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands P1 and T1 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P7 from 2006 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetlands P6 and P7 from 2007 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P3 from 2012 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P11 from 2004 Digital Orthorectified Aerial Image of Cottonwood Lake Study Area Wetland P11 from 2015 Cottonwood Lake Study Area – Digital Elevation Model with Topobathy UMRR Pool 15 Topobathy UMRR Pool 16 Topobathy Land cover classification dataset