<?xml version="1.0" encoding="UTF-8" standalone="no"?>
<metadata>
<idinfo>
<citation>
<citeinfo>
<origin>Florida Division of Emergency Management</origin>
<pubdate>20080327</pubdate>
<title>2FT CONTOUR LINES - CHARLOTTE COUNTY</title>
<geoform Sync="TRUE">vector digital data</geoform>
<ftname Sync="TRUE">topo2ft_woolpert_charlotte</ftname>
<pubtime>Unknown</pubtime>
<onlink>http://www.floridadisaster.org/gis</onlink>
<pubinfo>
<pubplace>Tallahassee, FL</pubplace>
<publish>Florida Division of Emergency Management</publish>
</pubinfo>
<othercit>Charlotte County</othercit>
</citeinfo>
</citation>
<descript>
<abstract>This data set is one component of a digital terrain model (DTM) for the Florida Division of Emergency Management's (FDEM) Project Management and Technical Services for Mapping within Coastal Florida (Contract 07-HS-34-14-00-22-469), encompassing the entire coastline of Florida. The dataset is comprised of 2-foot contours. Contours were generated from a gridded DEM: 2-foot contours meet National Map Accuracy Standards Bare earth LiDAR masspoint data display a vertical accuracy of at least 0.3-feet root mean square error (RMSE) in open unobscured areas.</abstract>
<purpose>The DTM was developed to support the Florida Division of Emergency Management (FDEM) development and maintainenance of Regional Evacuation Studies (Study), which include vulnerability assessments and assist disaster response personnel in understanding threats to Florida's citizens and visitors. Breaklines improve the digital elevation model in areas where the point density is insufficient.</purpose>
<supplinf>Project Title: Project Management and Technical Services for Mapping within Coastal Florida (Contract 07-HS-34-14-00-22-469) Task Order: 20070525-492720a Vendor Name: Woolpert, Inc.</supplinf>
<langdata Sync="TRUE">en</langdata>
</descript>
<timeperd>
<timeinfo>
<sngdate>
<caldate>20080508</caldate>
</sngdate>
</timeinfo>
<current>publication date</current>
</timeperd>
<status>
<progress>Complete</progress>
<update>As needed</update>
</status>
<spdom>
<bounding>
<westbc>-87.429040</westbc>
<eastbc>-79.872251</eastbc>
<northbc>30.983191</northbc>
<southbc>24.492815</southbc>
</bounding>
<lboundng>
<leftbc Sync="TRUE">561097.231100</leftbc>
<rightbc Sync="TRUE">641609.046600</rightbc>
<bottombc Sync="TRUE">308607.470400</bottombc>
<topbc Sync="TRUE">337839.644900</topbc>
</lboundng>
<minalti>-2</minalti>
<maxalti>62</maxalti>
</spdom>
<keywords>
<place>
<placekey>United States</placekey>
<placekey>Florida</placekey>
<placekt>none</placekt>
</place>
<theme>
<themekey>Photogrammetry</themekey>
<themekey>Terrain</themekey>
<themekey>Stereo Model</themekey>
<themekey>Contours</themekey>
<themekey>LiDAR</themekey>
<themekey>Hydrology</themekey>
<themekey>DEM</themekey>
<themekt>NONE</themekt>
</theme>
</keywords>
<accconst>This data may be used by the requested party for stated purposes and should not be re-distributed.</accconst>
<useconst>This data is for planning purposes only and should not be used for legal or cadastral purposes. Regional Evacuation Studies are currently being updated and www.floridadisaster.org/gis should be consulted for revisions.</useconst>
<ptcontac>
<cntinfo>
<cntaddr>
<addrtype>mailing address</addrtype>
<address>2555 Shumard Oak Boulevard</address>
<city>Tallahassee</city>
<state>Florida</state>
<postal>32399-2100</postal>
<country>USA</country>
</cntaddr>
<cntvoice>850-413-9907</cntvoice>
<cntfax>850-488-1016</cntfax>
<cntorgp>
<cntorg>Florida Division of Emergency Management</cntorg>
</cntorgp>
<cntemail>gis@dca.state.fl.us</cntemail>
</cntinfo>
</ptcontac>
<native Sync="TRUE">Microsoft Windows XP Version 5.1 (Build 2600) Service Pack 3; ESRI ArcCatalog 9.3.1.4000</native>
<natvform>FILE GEODATABASE (ArcGIS 9.2 or later)</natvform>
</idinfo>
<dataqual>
Breaklines for this component of the DTM were photogrammetrically collected from stereo models created in a GeoCue environment. That is, the stereo view was created from a surface generated from 2007 LiDAR data, with existing orthophotography proviede by FDEM "draped" over that LiDAR surface to simulate a photographic stereo image view. The breaklines features were captured in accordance with the FDEM Baseline Specifications 1.2.
<logic>These breaklines were determined from LiDAR and stereo tile (LiDAR grammetry) data of specific dates and that model the land/water contributions and extents on those dates. The 3-D vector line work was created using stereo-compilation. A thorough QC procedure was implemented to verify the elevation of the breaklines and to ensure no zero elevations were found except in coastal areas where it is possible to find z values equal to mean sea level. Additional QC steps were taken to ensure all breaklines agree with the vertical location of the LiDAR. The DTM was developed in accordance with the Baseline Specifications 1.2. The DTM is intended to support 2-foot contours, and the vertical accuracy of ground points in unobscured areas is not to exceed 0.6-feet RMSE. A thorough QC was implemented to verify the breakline elevation accuracy.</logic>
<posacc>
<horizpa>
<horizpar>Horizontal accuracy is +/- 3.8-foot at the 95% confidence level using RMSE(r) x 1.7308 as defined by the FGDC Geospatial Positional Accuracy Standards, Part 3: NSSDA.</horizpar>
<qhorizpa>
<horizpav>3.8</horizpav>
<horizpae>see MTS Report of Specific Purpose Survey</horizpae>
</qhorizpa>
</horizpa>
<vertacc>
<vertaccr>0.3-feet RMSE for unobscured ground points. The accuracy assessment was performed using a standard method to compute the root mean square error (RMSE) based on a comparison of ground control points and filtered LiDAR data points. Filtered LiDAR data has had vegetation and cultural features removed and by analysis represents bare earth elevations. The RMSE figure was used to compute the vertical National Standard for Spatial Data Accuracy (NSSDA).
</vertaccr>
<qvertpa>
<vertaccv>0.3-feet RMSE - tested</vertaccv>
<vertacce>see MTS Report of Specific Purpose Survey</vertacce>
</qvertpa>
</vertacc>
</posacc>
<lineage>
<srcinfo>
<srccite>
<citeinfo>
Florida Division of Emergency Management
<pubdate>20080327</pubdate>
<pubtime>Unknown</pubtime>
<title>State of Florida Division of Emergency Management LiDAR Project Survey</title>
<geoform>vector digital data</geoform>
<origin>Florida DEM</origin>
<origin>Woolpert, Inc.</origin>
</citeinfo>
</srccite>
<srctime>
<timeinfo>
<sngdate>
<caldate>20080327</caldate>
</sngdate>
</timeinfo>
<srccurr>publication date</srccurr>
</srctime>
<srcscale>24000</srcscale>
<typesrc>Hard Drive</typesrc>
<srccontr>Spatial and Attribute Information</srccontr>
<srccitea>Woopert</srccitea>
<srccurr>publication date</srccurr>
</srcinfo>
<procstep>
<procdesc>The Airborne Global Positioning System (ABGPS), inertial measurement unit (IMU), and raw scans are collected during the LiDAR aerial survey. The ABGPS monitors the xyz position of the sensor and the IMU monitors the orientation. During the aerial survey laser pulses reflected from features on the ground surface are detected by the receiver optics and collected by the data logger. GPS locations are based on data collected by receivers on the aircraft and base stations on the ground. The ground base stations are placed no more than 20 mile radius from the flight survey area.</procdesc>
<proccont>
<cntinfo>
<cntorgp>
<cntorg>Woolpert, Inc.</cntorg>
<cntper>Richard R. Hudson, PE, PSM, CP</cntper>
</cntorgp>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>11315 Corporate Blvd</address>
<city>Orlando</city>
<state>Florida</state>
<postal>32817</postal>
<country>USA</country>
</cntaddr>
<cntvoice>407-381-2192</cntvoice>
<cntfax>407-384-1185</cntfax>
<cntemail>www.woolpert.com</cntemail>
<hours>8:00-5:00</hours>
<cntinst>Monday-Friday</cntinst>
<cntpos>Project Manager</cntpos>
</cntinfo>
</proccont>
<procsv>varied</procsv>
<srcused>Leica ALS50</srcused>
<srcused>Inertial Measuring Unit</srcused>
<srcused>Airborne Global Positioning System</srcused>
<srcused>Global Positioning System</srcused>
<srcprod>LiDAR Scan Files</srcprod>
<srcprod>GPS data</srcprod>
<procdate>Unknown</procdate>
</procstep>
<procstep>
<procdesc>The ABGPS, IMU, and raw scans are integrated using proprietary software developed by the Leica Geosystems and delivered with the Leica ALS50 System. The resultant file is in a LAS binary 1.1 file format. The LAS file format can be easily transferred from one file format to another. It is a binary file format that maintains information specific to the LiDAR data (return#, intensity value, xyz, etc.). The resultant points are produced in the Florida State PlaneWest Zone coordinate system, with units in feet and referenced to the NAD83/90 HARN horizontal datum and NAVD88 vertical datum.</procdesc>
<srcused>Airborne Global Positioning System</srcused>
<date Sync="TRUE">20070107</date>
<time Sync="TRUE">13192000</time>
<procdate>Unknown</procdate>
<srcused>Inertial Measurement Unit</srcused>
<srcused>LiDAR data</srcused>
<srcprod>FDEM</srcprod>
<procsv>varied</procsv>
<proccont>
<cntinfo>
<cntperp>
<cntper>Richard R. Hudson, PE, PSM, CP</cntper>
<cntorg>Woolpert, Inc.</cntorg>
</cntperp>
<cntpos>Project Manager</cntpos>
<cntvoice>407-381-2192</cntvoice>
<cntfax>407-384-1185</cntfax>
<cntemail>www.woolpert.com</cntemail>
<hours>8:00-5:00</hours>
<cntinst>Monday-Friday</cntinst>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>11315 Corporate Blvd</address>
<city>Orlando</city>
<state>Florida</state>
<postal>32817</postal>
<country>USA</country>
</cntaddr>
</cntinfo>
</proccont>
</procstep>
<procstep>
<procdesc>The unedited data are classified to facilitate the application of the appropriate feature extraction filters. Interactive editing methods are applied to those areas where it is inappropriate or impossible to use the feature extraction filters, based upon the design criteria and/or limitations of the relevant filters. These same feature extraction filters are used to produce elevation height surfaces.</procdesc>
<date Sync="TRUE">20080324</date>
<time Sync="TRUE">10023800</time>
<procsv>varied</procsv>
<procdate>Unknown</procdate>
<proccont>
<cntinfo>
<cntperp>
<cntper>Richard R. Hudson, PE, PSM, CP</cntper>
<cntorg>Woolpert, Inc.</cntorg>
</cntperp>
<cntpos>Project Manager</cntpos>
<cntvoice>407-381-2192</cntvoice>
<cntfax>407-384-1185</cntfax>
<cntemail>www.woolpert.com</cntemail>
<hours>8:00-5:00</hours>
<cntinst>Monday-Friday</cntinst>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>11315 Corporate Blvd</address>
<city>Orlando</city>
<state>Florida</state>
<postal>32817</postal>
<country>USA</country>
</cntaddr>
</cntinfo>
</proccont>
</procstep>
<procstep>
<procdesc>Filtered Lidar and vector data are subjected to rigorous QA/QC procedures designed by Wollpert. Terramodel software was used to display the edited LiDAR points and associated GEOTIFF orthophotos to construct breaklines for the edge pavement. Breakline elevations were linearly ramped between identified critical elevation points along roads.</procdesc>
<srcused>LiDAR data LAS 1.1 format</srcused>
<date Sync="TRUE">20080325</date>
<time Sync="TRUE">17013800</time>
<proccont>
<cntinfo>
<cntperp>
<cntper>Richard R. Hudson, PE, PSM, CP</cntper>
<cntorg>Woolpert, Inc.</cntorg>
</cntperp>
<cntpos>Project Manager</cntpos>
<cntvoice>407-381-2192</cntvoice>
<cntfax>407-384-1185</cntfax>
<cntemail>www.woolpert.com</cntemail>
<hours>8:00-5:00</hours>
<cntinst>Monday-Friday</cntinst>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>11315 Corporate Blvd</address>
<city>Orlando</city>
<state>Florida</state>
<postal>32817</postal>
<country>USA</country>
</cntaddr>
</cntinfo>
</proccont>
<srcprod>3-D breaklines</srcprod>
<srcprod>Classified filtered Lidar data</srcprod>
<procdate>Unknown</procdate>
</procstep>
<procstep>
<procdesc>GeoPlan received this data via hard drive from Jones Edmunds on 5/5/10. The Florida Division of Emergency Management contracted this data out to Woopert. When received the data was in a series of file geodatabases. The data was merged into 1 file geodatabase and clipped to the appropriate county boundary. The feature class was projected from varying State Plane projections - feet to Albers HPGN. -Added SOURCE field and populated all values to WOO
-Added FGDLAQDATE field based on date GeoPlan acquired data from source
-Changed name from original Woorpert name to TOPO2FT_WOOLPERT_COUNTY</procdesc>
<srcused>GeoPlan</srcused>
<procdate>20100805</procdate>
</procstep>
</lineage>
<complete>All breakline features are an accurate three-demensional representation of the surface with varying elevations. Roadbreakline features were captured at edge of pavement. The LiDAR (masspoint) feature class consists of 104 tiles (Area_A).
</complete>
<attracc>
<attraccr>GeoPlan relied on the integrity of the attribute information within
the original data.</attraccr>
</attracc>
</dataqual>
<spdoinfo>
<direct Sync="TRUE">Vector</direct>
<ptvctinf>
<sdtsterm Name="topo2ft_woolpert_charlotte">
<sdtstype Sync="TRUE">String</sdtstype>
<ptvctcnt Sync="TRUE">98557</ptvctcnt>
</sdtsterm>
<esriterm Name="topo2ft_woolpert_charlotte">
<efeatyp Sync="TRUE">Simple</efeatyp>
<efeageom Sync="TRUE">Polyline</efeageom>
<esritopo Sync="TRUE">FALSE</esritopo>
<efeacnt Sync="TRUE">98557</efeacnt>
<spindex Sync="TRUE">TRUE</spindex>
<linrefer Sync="TRUE">FALSE</linrefer>
</esriterm>
</ptvctinf>
</spdoinfo>
<spref>
<horizsys>
<planar>
<planci>
<plance>coordinate pair</plance>
<coordrep>
<absres>0.002048</absres>
<ordres>0.002048</ordres>
</coordrep>
<plandu>meters</plandu>
</planci>
<mapproj>
<mapprojn Sync="TRUE">Albers Conical Equal Area</mapprojn>
<albers>
<stdparll Sync="TRUE">24.000000</stdparll>
<stdparll Sync="TRUE">31.500000</stdparll>
<longcm Sync="TRUE">-84.000000</longcm>
<latprjo Sync="TRUE">24.000000</latprjo>
<feast Sync="TRUE">400000.000000</feast>
<fnorth Sync="TRUE">0.000000</fnorth>
</albers>
</mapproj>
</planar>
<geodetic>
<horizdn Sync="TRUE">D_North_American_1983_HARN</horizdn>
<ellips Sync="TRUE">Geodetic Reference System 80</ellips>
<semiaxis Sync="TRUE">6378137.000000</semiaxis>
<denflat Sync="TRUE">298.257222</denflat>
</geodetic>
<cordsysn>
<projcsn>Albers Conical Equal Area</projcsn>
<geogcsn Sync="TRUE">GCS_North_American_1983_HARN</geogcsn>
<horizdn>HPGN</horizdn>
<ellips>Geodetic Reference System 80</ellips>
<semiaxis>6378137.000000</semiaxis>
<denflat>298.257222</denflat>
</cordsysn>
</horizsys>
<vertdef>
<altsys>
<altdatum>North American Vertical Datum of 1988</altdatum>
<altres Sync="TRUE">0.000100</altres>
<altunits>feet</altunits>
<altenc Sync="TRUE">Explicit elevation coordinate included with horizontal coordinates</altenc>
</altsys>
</vertdef>
</spref>
<eainfo>
<detailed Name="topo2ft_woolpert_charlotte">
<enttyp>
<enttypl>TOPO2FT_WOOLPERT_CHARLOTTE </enttypl>
<enttypt Sync="TRUE">Feature Class</enttypt>
<enttypc Sync="TRUE">98557</enttypc>
<enttypd>TOPO2FT_WOOLPERT_CHARLOTTE </enttypd>
<enttypds>DTM</enttypds>
</enttyp>
<attr>
<attrlabl Sync="TRUE">OBJECTID</attrlabl>
<attalias Sync="TRUE">OBJECTID</attalias>
<attrtype Sync="TRUE">OID</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Internal feature number.</attrdef>
<attrdefs Sync="TRUE">ESRI</attrdefs>
<attrdomv>
<udom Sync="TRUE">Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape</attrlabl>
<attalias Sync="TRUE">Shape</attalias>
<attrtype Sync="TRUE">Geometry</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Feature geometry.</attrdef>
<attrdefs Sync="TRUE">ESRI</attrdefs>
<attrdomv>
<udom Sync="TRUE">Coordinates defining the features.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">CONTOUR_ELEVATION_MS</attrlabl>
<attalias Sync="TRUE">CONTOUR_ELEVATION_MS</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef>Contour Elevation in feet</attrdef>
<attrdefs>DTM</attrdefs>
</attr>
<attr>
<attrlabl Sync="TRUE">CONTOUR_TYPE_DESC</attrlabl>
<attalias Sync="TRUE">CONTOUR_TYPE_DESC</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">50</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdefs>FDEM Baseline Specifications</attrdefs>
<attrdef>Description of represented contour type</attrdef>
<attrdomv>
<edom>
<edomv>1</edomv>
<edomvd>Intermediate Contours - the three or four lines between adjacent index contours are about half the line weight of index contours. They are normally continuous throughout a map, but may be dropped or joined with an index contour where the slope is steep and where there is insufficient space to show all of the intermediate lines.</edomvd>
</edom>
<edom>
<edomv>2</edomv>
<edomvd>Supplementary Contours - used to portray important relief features that would otherwise not be shown by the index and intermediate contours (basic contours). They are normally added only in areas of low relief, but they may also be used in rugged terrain to emphasize features. Supplementary contours are shown as screened lines so that they are distinguishable from the basic contours, yet not unduly prominent on the published map.</edomvd>
</edom>
<edom>
<edomv>3</edomv>
<edomvd>Depression Contours - closed contours that surround a basin or sink. They are shown by right-angle ticks placed on the contour lines, pointed inward (down slope). Fill contours are a special type of depression contours, used to indicate an area that has been filled to support a road or railway grade.</edomvd>
</edom>
<edom>
<edomv>4</edomv>
<edomvd> Index Contours - defined as every 5th contour line. For example, with the Contour_2FT feature class, the first positive intermediate contour would be 0 with the following index contours at 10, 20, 30 feet, etc.</edomvd>
</edom>
<edom>
<edomv>5</edomv>
<edomvd>INTERMEDIATE LOW CONFIDENCE</edomvd>
</edom>
<edom>
<edomv>6</edomv>
<edomvd>SUPPLEMENTARY LOW CONFIDENCE</edomvd>
</edom>
<edom>
<edomv>7</edomv>
<edomvd>DEPRESSION LOW CONFIDENCE</edomvd>
</edom>
<edom>
<edomv>8</edomv>
<edomvd>INDEX LOW CONFIDENCE</edomvd>
</edom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">DATESTAMP_DT</attrlabl>
<attalias Sync="TRUE">DATESTAMP_DT</attalias>
<attrtype Sync="TRUE">Date</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef>The date the feature was added to the geodatabase</attrdef>
<attrdefs>FDEM Baseline Specifications</attrdefs>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape_Length</attrlabl>
<attalias Sync="TRUE">Shape_Length</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Length of feature in internal units.</attrdef>
<attrdefs Sync="TRUE">ESRI</attrdefs>
<attrdomv>
<udom Sync="TRUE">Positive real numbers that are automatically generated.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">FGDLAQDATE</attrlabl>
<attalias Sync="TRUE">FGDLAQDATE</attalias>
<attrtype Sync="TRUE">Date</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef>Data GeoPlan acquired data from source</attrdef>
<attrdefs>GeoPlan</attrdefs>
</attr>
<attr>
<attrlabl Sync="TRUE">SOURCE</attrlabl>
<attalias Sync="TRUE">SOURCE</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">3</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef>Abbreviated 3-letter code representing the data source.</attrdef>
<attrdefs>GeoPlan</attrdefs>
<attrdomv>
<edom>
<edomv>WOO </edomv>
<edomvd>Woolpert</edomvd>
</edom>
</attrdomv>
</attr>
</detailed>
<overview>
<dsoverv>This data set was designed in accordance with FDEM Baseline Specifications 1.2 (5.2.1.4)</dsoverv>
<eaover>Entity and Attribute information designed in accordance to FDEM Baseline Specifications 1.2 (Attachment 3)</eaover>
<eadetcit>Entity and Attribute information designed in accordance to FDEM Baseline Specifications 1.2 (Attachment 3)</eadetcit>
</overview>
</eainfo>
<distinfo>
<distrib>
<cntinfo>
<cntaddr>
<addrtype>mailing address</addrtype>
<address>431 Architecture PO Box 115706</address>
<city>Gainesville</city>
<state>Florida</state>
<postal>32611-5706</postal>
<country>United States</country>
</cntaddr>
<cntorgp>
<cntorg>Florida Geographic Data Library (FGDL)</cntorg>
</cntorgp>
<cntemail>Web site: http://www.fgdl.org</cntemail>
<cntemail>Technical Support: http://www.fgdl.org/fgdlfeed.html</cntemail>
<cntemail>For FGDL Software: http://www.fgdl.org/software.html</cntemail>
<cntemail>FGDL Frequently Asked Questions: http://www.fgdl.org/fgdlfaq.html</cntemail>
<cntemail>Mailing list for FGDL: http://www.fgdl.org/fgdl-l.html</cntemail>
</cntinfo>
</distrib>
<resdesc>DOWNLOADABLE DATA</resdesc>
<stdorder>
<digform>
<digtinfo>
<transize>0.388</transize>
<formname>ASCII</formname>
</digtinfo>
<digtopt>
<offoptn>
<offmedia>CD-ROM</offmedia>
<recfmt>Digital</recfmt>
</offoptn>
</digtopt>
</digform>
<fees>None.</fees>
</stdorder>
<distliab>The Florida Geographic Data Library is a collection of Geospatial Data
compiled by the University of Florida GeoPlan Center with support from
the Florida Department of Transportation. GIS data available in FGDL is
collected from various state, federal, and other agencies (data sources)
who are data stewards, producers, or publishers. The data available in
FGDL may not be the most current version of the data offered by the
data source. University of Florida GeoPlan Center makes no guarantees
about the currentness of the data and suggests that data users check
with the data source to see if more recent versions of the data exist.
Furthermore, the GIS data available in the FGDL are provided 'as is'.
The University of Florida GeoPlan Center makes no warranties, guaranties
or representations as to the truth, accuracy or completeness of the data
provided by the data sources. The University of Florida GeoPlan Center
makes no representations or warranties about the quality or suitability
of the materials, either expressly or implied, including but not limited
to any implied warranties of merchantability, fitness for a particular
purpose, or non-infringement. The University of Florida GeoPlan Center
shall not be liable for any damages suffered as a result of using,
modifying, contributing or distributing the materials.
A note about data scale: Scale is an important factor in data usage. Certain scale datasets
are not suitable for some project, analysis, or modeling purposes.
Please be sure you are using the best available data. 1:24000 scale datasets are recommended for projects that are at the
county level.
1:24000 data should NOT be used for high accuracy base mapping such
as property parcel boundaries.
1:100000 scale datasets are recommended for projects that are at the
multi-county or regional level.
1:125000 scale datasets are recommended for projects that are at the
regional or state level or larger.
Vector datasets with no defined scale or accuracy should be
considered suspect. Make sure you are familiar with your data
before using it for projects or analysis. Every effort has been
made to supply the user with data documentation. For additional
information, see the References section and the Data Source Contact
section of this documentation. For more information regarding
scale and accuracy, see our webpage at:
http://geoplan.ufl.edu/education.html</distliab>
<techpreq>This data is intended for use with a Geographic Information Systems or Remote Sensing software package.</techpreq>
</distinfo>
<metainfo>
<metd Sync="TRUE">20100825</metd>
<metc>
<cntinfo>
<cntaddr>
<addrtype>mailing address</addrtype>
<address>2555 Shumard Oak Boulevard</address>
<city>Tallahassee</city>
<state>Florida</state>
<postal>32399-2100</postal>
<country>USA</country>
</cntaddr>
<cntvoice>850-413-9907</cntvoice>
<cntfax>850-488-1016</cntfax>
<cntpos>GIS Administrator</cntpos>
<cntemail>richard.butgereit@em.myflorida.com</cntemail>
<cntorgp>
<cntorg>Florida DEM</cntorg>
<cntper>Richard Butgereit</cntper>
</cntorgp>
</cntinfo>
</metc>
<metstdn Sync="TRUE">FGDC Content Standards for Digital Geospatial Metadata</metstdn>
<metstdv Sync="TRUE">FGDC-STD-001-1998</metstdv>
<mettc Sync="TRUE">local time</mettc>
<metextns>
<onlink>http://www.esri.com/metadata/esriprof80.html</onlink>
<metprof>ESRI Metadata Profile</metprof>
</metextns>
<langmeta Sync="TRUE">en</langmeta>
<metextns>
<onlink Sync="TRUE">http://www.esri.com/metadata/esriprof80.html</onlink>
<metprof Sync="TRUE">ESRI Metadata Profile</metprof>
</metextns>
</metainfo>
<Esri>
<CreaDate>20100825</CreaDate>
<CreaTime>15484500</CreaTime>
<SyncOnce>FALSE</SyncOnce>
<ModDate>20100825</ModDate>
<ModTime>16394800</ModTime>
<SyncDate>20100825</SyncDate>
<SyncTime>16394800</SyncTime>
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<Process Date="20091029" Time="182444" ToolSource="C:\Program Files\ArcGIS\ArcToolbox\Toolboxes\Data Management Tools.tbx\Merge">Merge G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_A\Woolpert_LiDAR_AreaA_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_B\Woolpert_LiDAR_Area_B_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_C\Woolpert_LiDAR_AreaC_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_D\Woolpert_LiDAR_AreaD_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_E\Woolpert_LiDAR_AreaE_2007_final.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_F\Woolpert_LiDAR_AreaF_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Lee_County_Buyup\Woolpert_LiDAR_LeeCounty_BuyUp_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Pasco_Coastal\Woolpert_LiDAR_Pasco_Coastal\Woolpert_LiDAR_AreaA33_2007.gdb\Topographic\CONTOUR_2FT;G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Sarasota_Buyup\Woolpert_LiDAR_SarasotaBuyUp_2007.gdb\Topographic\CONTOUR_2FT H:\lidar_output\topo2ft_woolpert.gdb\topo2ft_woolpert_stplane "CONTOUR_ELEVATION_MS 'CONTOUR_ELEVATION_MS' true true false 8 Double 0 0 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'CONTOUR_TYPE_DESC' true true false 50 Text 0 0 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'DATESTAMP_DT' true true false 8 Date 0 0 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'SHAPE_Length' false true true 8 Double 0 0 ,First,#,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_A\Woolpert_LiDAR_AreaA_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_B\Woolpert_LiDAR_Area_B_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_C\Woolpert_LiDAR_AreaC_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_D\Woolpert_LiDAR_AreaD_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_E\Woolpert_LiDAR_AreaE_2007_final.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_F\Woolpert_LiDAR_AreaF_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Lee_County_Buyup\Woolpert_LiDAR_LeeCounty_BuyUp_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Pasco_Coastal\Woolpert_LiDAR_Pasco_Coastal\Woolpert_LiDAR_AreaA33_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1,G:\Lidar\Accepted_Data_as_of_August_26_2009\Woolpert\Woolpert_Sarasota_Buyup\Woolpert_LiDAR_SarasotaBuyUp_2007.gdb\Topographic\CONTOUR_2FT,SHAPE_Length,-1,-1"</Process>
<Process Date="20091030" Time="060208" ToolSource="C:\Program Files\ArcGIS\ArcToolbox\Toolboxes\Data Management Tools.tbx\Project">Project H:\lidar_output\topo2ft_woolpert.gdb\topo2ft_woolpert_stplane H:\lidar_output\topo2ft_woolpert.gdb\topo2ft_woolpert_alb PROJCS['Albers Conical Equal Area [Florida Geographic Data Library]',GEOGCS['GCS_North_American_1983_HARN',DATUM['D_North_American_1983_HARN',SPHEROID['GRS_1980',6378137.0,298.257222101]],PRIMEM['Greenwich',0.0],UNIT['Degree',0.0174532925199433]],PROJECTION['Albers'],PARAMETER['False_Easting',400000.0],PARAMETER['False_Northing',0.0],PARAMETER['Central_Meridian',-84.0],PARAMETER['Standard_Parallel_1',24.0],PARAMETER['Standard_Parallel_2',31.5],PARAMETER['Central_Parallel',24.0],UNIT['Meter',1.0]] # PROJCS['NAD_1983_HARN_StatePlane_Florida_West_FIPS_0902_Feet',GEOGCS['GCS_North_American_1983_HARN',DATUM['D_North_American_1983_HARN',SPHEROID['GRS_1980',6378137.0,298.257222101]],PRIMEM['Greenwich',0.0],UNIT['Degree',0.0174532925199433]],PROJECTION['Transverse_Mercator'],PARAMETER['False_Easting',656166.6666666665],PARAMETER['False_Northing',0.0],PARAMETER['Central_Meridian',-82.0],PARAMETER['Scale_Factor',0.9999411764705882],PARAMETER['Latitude_Of_Origin',24.33333333333333],UNIT['Foot_US',0.3048006096012192]],VERTCS['NAVD_1988',VDATUM['North_American_Vertical_Datum_1988'],PARAMETER['Vertical_Shift',0.0],PARAMETER['Direction',1.0],UNIT['Foot_US',0.3048006096012192]]</Process>
<Process Date="20100806" Name="Select Layer By Location" Time="151051" ToolSource="C:\Program Files\ArcGIS\ArcToolbox\Toolboxes\Data Management Tools.tbx\SelectLayerByLocation">SelectLayerByLocation topo2ft_woolpert_Layer INTERSECT H:\lidar_output\shapes\counties_woolpert\charlotte_08.shp # NEW_SELECTION topo2ft_woolpert_Layer</Process>
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