The Application of GIS and Remote Sensing in a Spatiotemporal Analysis...
77
[7] Drammeh F.: Assessing and adapting to climate‑change induced sea lev‑
el rise on the Southern coastline of the Gambia. 2013. https://www.un.org/
Depts/los/nippon/unnff_programme_home/fellows_pages/fellows_papers/
Drammeh_1314_Gam.pdf [access: 14.06.2015].
[8] European Commission: Living with coastal erosion in Europe: sediment and
space for sustainability. Part II Maps and statistics. Report Directorate General
of Environment, European Commission, Brussels 2004.
[9] Morton R.A., Miller T., Moore L.J.: Historical shoreline changes along the US Gulf
of Mexico: A summary of recent shoreline comparisons and analyses. Journal of
Coastal Research, vol. 21, no. 4, 2004, pp. 704–709. https://doi.org/10.2112/040230.1.
[10] Morton R.A., Miller T.L.: National assessment of shoreline change: Part 2. His‑
torical shoreline changes and associated coastal land loss along the U.S. Southeast
Atlantic Coast. U.S. Geological Survey Open File Report, 2005-1401.
[11] Hapke C.J., Reid D., Richmond B.M., Ruggiero P., List J.: National Assessment
of Shoreline Change. Part 3: Historical Shoreline Change and Associated Coastal
Land Loss Along Sandy Shorelines of the California Coast. USGS Report, U.S. De‑
partment of the Interior, U.S. Geological Survey, 2016. https://pubs.usgs.
gov/of/2006/1219/of2006-1219.pdf [access: 22.09.2020].
[12] Dillenburg S.R., Esteves L.S., Tomazelli L.J.: A critical evaluation of coastal ero‑
sion in Rio Grande do Sul, Southern Brazil. Annals of the Brazilian Academy
of Science, vol. 76, no. 3, 2004, pp. 611–623. https://doi.org/10.1590/S000137652004000300014.
[13] Gopinath G., Seralathan P.: Rapid Erosion of the coast of Sagar island, West Ben‑
gal – India. Environmental Geology, vol. 48(8), pp. 1058–1067. https://doi.
org/10.1007/s00254-005-0044-9.
[14] El-Hattab M.: Improving Coastal Vulnerability Index of the Nile Delta Coastal
Zone, Egypt. Journal of Earth Science & Climatic Change vol. 6, issue 8, 2015,
art. no. 293. https://doi.org/10.4172/2157-7617.1000293.
[15] Torresan S., Furlan E., Critto A., Michetti M., Marcomini A.: Egypt’s Coastal
Vulnerability to Sea‑Level Rise and Storm Surge: Present and Future Conditions.
Integrated Environmental Assessment and Management, vol. 16, issue 5,
2020, pp. 761–772. https://doi.org/10.1002/ieam.4280.
[16] Makota V., Sallema R., Mahika C.: Monitoring shoreline change using remote
sensing and GIS: A case study of Kunduchi area, Tanzania. Western Indian Ocean
Journal Marine Science, vol. 3, no. 1, 2004, pp. 1–10.
[17] Ozer P., Hountondji Y.-C., De Longueville F.: Evolution récente du trait de côte
dans le golfe du Bénin. Exemples du Togo et du Bénin. Geo-Eco-Trop: Revue
Internationale de Géologie, de Géographie et d’Écologie Tropicales, vol. 41,
issue 3, 2017, pp. 529–541.
[18] Diallo S.: Evolution géomorphologique du littoral sur la Petite Côte à Rufisque.
Mémoire de Maîtrise, Université de Dakar, Dakar 1982.
77
[7] Drammeh F.: Assessing and adapting to climate‑change induced sea lev‑
el rise on the Southern coastline of the Gambia. 2013. https://www.un.org/
Depts/los/nippon/unnff_programme_home/fellows_pages/fellows_papers/
Drammeh_1314_Gam.pdf [access: 14.06.2015].
[8] European Commission: Living with coastal erosion in Europe: sediment and
space for sustainability. Part II Maps and statistics. Report Directorate General
of Environment, European Commission, Brussels 2004.
[9] Morton R.A., Miller T., Moore L.J.: Historical shoreline changes along the US Gulf
of Mexico: A summary of recent shoreline comparisons and analyses. Journal of
Coastal Research, vol. 21, no. 4, 2004, pp. 704–709. https://doi.org/10.2112/040230.1.
[10] Morton R.A., Miller T.L.: National assessment of shoreline change: Part 2. His‑
torical shoreline changes and associated coastal land loss along the U.S. Southeast
Atlantic Coast. U.S. Geological Survey Open File Report, 2005-1401.
[11] Hapke C.J., Reid D., Richmond B.M., Ruggiero P., List J.: National Assessment
of Shoreline Change. Part 3: Historical Shoreline Change and Associated Coastal
Land Loss Along Sandy Shorelines of the California Coast. USGS Report, U.S. De‑
partment of the Interior, U.S. Geological Survey, 2016. https://pubs.usgs.
gov/of/2006/1219/of2006-1219.pdf [access: 22.09.2020].
[12] Dillenburg S.R., Esteves L.S., Tomazelli L.J.: A critical evaluation of coastal ero‑
sion in Rio Grande do Sul, Southern Brazil. Annals of the Brazilian Academy
of Science, vol. 76, no. 3, 2004, pp. 611–623. https://doi.org/10.1590/S000137652004000300014.
[13] Gopinath G., Seralathan P.: Rapid Erosion of the coast of Sagar island, West Ben‑
gal – India. Environmental Geology, vol. 48(8), pp. 1058–1067. https://doi.
org/10.1007/s00254-005-0044-9.
[14] El-Hattab M.: Improving Coastal Vulnerability Index of the Nile Delta Coastal
Zone, Egypt. Journal of Earth Science & Climatic Change vol. 6, issue 8, 2015,
art. no. 293. https://doi.org/10.4172/2157-7617.1000293.
[15] Torresan S., Furlan E., Critto A., Michetti M., Marcomini A.: Egypt’s Coastal
Vulnerability to Sea‑Level Rise and Storm Surge: Present and Future Conditions.
Integrated Environmental Assessment and Management, vol. 16, issue 5,
2020, pp. 761–772. https://doi.org/10.1002/ieam.4280.
[16] Makota V., Sallema R., Mahika C.: Monitoring shoreline change using remote
sensing and GIS: A case study of Kunduchi area, Tanzania. Western Indian Ocean
Journal Marine Science, vol. 3, no. 1, 2004, pp. 1–10.
[17] Ozer P., Hountondji Y.-C., De Longueville F.: Evolution récente du trait de côte
dans le golfe du Bénin. Exemples du Togo et du Bénin. Geo-Eco-Trop: Revue
Internationale de Géologie, de Géographie et d’Écologie Tropicales, vol. 41,
issue 3, 2017, pp. 529–541.
[18] Diallo S.: Evolution géomorphologique du littoral sur la Petite Côte à Rufisque.
Mémoire de Maîtrise, Université de Dakar, Dakar 1982.
