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Value | Definition |
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0 | Short integer field where zeros are "no data" and automatically filled in for the remaining shoreline polylines not derived from lidar. |
Value | Definition |
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0 | Zeros are "no data" and serve as place fillers for the lidar shorelines. Actual uncertainty values for lidar are stored in shoreline uncertainty dBase (.dbf) file. |
Value | Definition |
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USGS | U.S. Geological Survey |
NOAA | National Oceanic and Atmospheric Administration |
NOAA/NOS | National Oceanic and Atmospheric Administration/National Ocean Service |
Value | Definition |
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lidar | Light detection and ranging (lidar). |
CERC map | Coastal Engineering Research Center (CERC) map |
T or TP with number | NOAA/NOS topographic survey sheet (T- or TP-sheet) with associated registry number |
Range of values | |
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Minimum: | 1852 |
Maximum: | 2010 |
Value | Definition |
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0 | Shoreline month and day are known. |
1 | Shoreline month and day are unknown and default value of 07/01 was used. |
Value | Definition |
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open ocean | Shoreline on a coast with open ocean wave exposure. |
Range of values | |
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Minimum: | 19.357719 |
Maximum: | 34878.848606 |
Units: | meters |
This dataset includes shorelines from 158 years ranging from 1852 to 2010 in central North Carolina's coastal region from Cape Hatteras to Cape Lookout. Shorelines were compiled from topographic survey sheets (T-sheets; National Oceanic and Atmospheric Administration (NOAA)), Coastal Engineering Research Center (CERC) maps (NOAA/National Ocean Service (NOS)), and lidar (U.S. Geological Survey (USGS)/NOAA/National Aeronautics and Space Administration (NASA), USGS/U.S. Army Corps of Engineers (USACE), USGS/NOAA/National Park Service (NPS)). Historical shoreline positions serve as easily understood features that can be used to describe the movement of beaches through time. These data are used to calculate rates of shoreline change for the U.S. Geological Survey's National Assessment of Shoreline Change Project. Rates of long-term and short-term shoreline change were generated in a GIS using the Digital Shoreline Analysis System (DSAS) version 4.3. DSAS uses a measurement baseline method to calculate rate-of-change statistics. Transects are cast from the reference baseline to intersect each shoreline, establishing measurement points used to calculate shoreline change rates.
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Are there legal restrictions on access or use of the data?Access_Constraints: None
Use_Constraints:Public domain data from the U.S. Government are freely redistributable with proper metadata and source attribution. Please recognize the U.S. Geological Survey as the originator of the dataset.
Neither the U.S. Government, the Department of the Interior, nor the USGS, nor any of their employees, contractors, or subcontractors, make any warranty, express or implied, nor assume any legal liability or responsibility for the accuracy, completeness, or usefulness of any information, apparatus, product, or process disclosed, nor represent that its use would not infringe on privately owned rights. The act of distribution shall not constitute any such warranty, and no responsibility is assumed by the USGS in the use of these data or related materials. Any use of trade, product, or firm names is for descriptive purposes only and does not imply endorsement by the U.S. Government.
Data format: | These files (.cpg, .dbf, .prj, .sbn, .sbx, .shp, .shp.xml, and .shx) are a collection of files with a common filename prefix and must be downloaded and stored in the same directory. Together they are the components of the shapefile and include FGDC compliant metadata. in format Shapefile (version ArcGIS 10.2) Esri polyline shapefile Size: 0.595 |
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Network links: |
https://www.sciencebase.gov/catalog/file/get/58b8913ee4b01ccd5500c312 https://www.sciencebase.gov/catalog/item/58b8913ee4b01ccd5500c312 https://www.sciencebase.gov/catalog/item/58055f50e4b0824b2d1c1ee7 https://doi.org/10.5066/F74X55X7 |
These data are available in a polyline shapefile format. The user must have software to read and process the data components of a shapefile.