Références bibliographiques
176
Thieler, E. R., and E. S. Hammar-Klose. 1999. National assessment of coastal
vulnerability to sea-level rise; U.S. Atlantic Coast. Open-File Report.
https://pubs.er.usgs.gov/publication/ofr99593 (last accessed 6 July 2021).
Thieler, E. R., E. A. Himmelstoss, J. L. Zichichi, and A. Ergul. 2009. USGS OFR
2008-1278: The Digital Shoreline Analysis System (DSAS) version 4.0, an ArcGIS
Extension for Calculating Historic Shoreline Change, Title Page.
https://cmgds.marine.usgs.gov/publications/DSAS/of2008-1278/ (last accessed 14
February 2020).
Thieler, E. R., E. A. Himmelstoss, J. L. Zichichi, and T. L. Miller. 2005. The Digital
Shoreline Analysis System (DSAS) version 3.0, an ArcGIS extension for calculating
historic
shoreline
change.
Reston,
VA:
U.S.
Geological
Survey.
http://pubs.er.usgs.gov/publication/ofr20051304 (last accessed 14 February 2020).
Thieler, E.R. - Danforth, W.W. (1994) : Historical Shoreline Mapping (I): Improving
Techniques and Reducing Positioning Errors. Journal of Coastal Research, 10(3),
549–563. http://www.jstor.org/stable/4298252
Thieler, E.R. - Himmelstoss, E.A. - Zichchi, J.L. - Miller TL (2005) : Digital Shorline
Analysis System(DSAS) version 3.0;An Arc Gis extension for calculating shorline
change.US.
Geological
Survey
Open-file
Report
2005-1304
(http://woodshole.er.usgs.gov/project-pages/dsas)
Yang, B., C. Hwang, and H. K. Cordell. 2012. Use of LiDAR shoreline extraction for
analyzing revetment rock beach protection: A case study of Jekyll Island State Park,
USA. Ocean & Coastal Management 69:1–15.
Yin, J., Z. Yin, J. Wang, and S. Xu. 2012. National assessment of coastal vulnerability
to sea-level rise for the Chinese coast. Journal of Coastal Conservation 16 (1):123–
133.
Zuzek, P.J. - Nairn, R.B. - Thieme, S.J. (2003) : Spatial and Temporal Considerations
for Calculating Shoreline Change Rates in the Great Lakes Basin. Journal of Coastal
Research,
125–146.
http://www.jstor.org/stable/25736603
176
Thieler, E. R., and E. S. Hammar-Klose. 1999. National assessment of coastal
vulnerability to sea-level rise; U.S. Atlantic Coast. Open-File Report.
https://pubs.er.usgs.gov/publication/ofr99593 (last accessed 6 July 2021).
Thieler, E. R., E. A. Himmelstoss, J. L. Zichichi, and A. Ergul. 2009. USGS OFR
2008-1278: The Digital Shoreline Analysis System (DSAS) version 4.0, an ArcGIS
Extension for Calculating Historic Shoreline Change, Title Page.
https://cmgds.marine.usgs.gov/publications/DSAS/of2008-1278/ (last accessed 14
February 2020).
Thieler, E. R., E. A. Himmelstoss, J. L. Zichichi, and T. L. Miller. 2005. The Digital
Shoreline Analysis System (DSAS) version 3.0, an ArcGIS extension for calculating
historic
shoreline
change.
Reston,
VA:
U.S.
Geological
Survey.
http://pubs.er.usgs.gov/publication/ofr20051304 (last accessed 14 February 2020).
Thieler, E.R. - Danforth, W.W. (1994) : Historical Shoreline Mapping (I): Improving
Techniques and Reducing Positioning Errors. Journal of Coastal Research, 10(3),
549–563. http://www.jstor.org/stable/4298252
Thieler, E.R. - Himmelstoss, E.A. - Zichchi, J.L. - Miller TL (2005) : Digital Shorline
Analysis System(DSAS) version 3.0;An Arc Gis extension for calculating shorline
change.US.
Geological
Survey
Open-file
Report
2005-1304
(http://woodshole.er.usgs.gov/project-pages/dsas)
Yang, B., C. Hwang, and H. K. Cordell. 2012. Use of LiDAR shoreline extraction for
analyzing revetment rock beach protection: A case study of Jekyll Island State Park,
USA. Ocean & Coastal Management 69:1–15.
Yin, J., Z. Yin, J. Wang, and S. Xu. 2012. National assessment of coastal vulnerability
to sea-level rise for the Chinese coast. Journal of Coastal Conservation 16 (1):123–
133.
Zuzek, P.J. - Nairn, R.B. - Thieme, S.J. (2003) : Spatial and Temporal Considerations
for Calculating Shoreline Change Rates in the Great Lakes Basin. Journal of Coastal
Research,
125–146.
http://www.jstor.org/stable/25736603
