Bibliographie
[1] T. A. abuz, “Environmental impacts—coastal erosion and coastline changes,” Second
assessment of climate change for the Baltic Sea basin, pp. 381–396, 2015. (Cited on
pages 1 and 2.)
[2] M. E. Hereher, “Coastal vulnerability assessment for egypt’s mediterranean coast,”
Geomatics, Natural Hazards and Risk, vol. 6, no. 4, pp. 342–355, 2015. (Cited on
page 1.)
[3] M. J. Stive, S. G. Aarninkhof, L. Hamm, H. Hanson, M. Larson, K. M. Wijnberg,
R. J. Nicholls, and M. Capobianco, “Variability of shore and shoreline evolution,”
Coastal engineering, vol. 47, no. 2, pp. 211–235, 2002. (Cited on page 1.)
[4] A. Sancho-García, J. Guillén, V. Gracia, A. C. Rodríguez-Gómez, and B. RubioNicolás, “The use of news information published in newspapers to estimate the
impact of coastal storms at a regional scale,” Journal of Marine Science and Engineering, vol. 9, no. 5, p. 497, 2021. (Cited on page 1.)
[5] M. Abualtayef, M. A. Rabou, S. Afifi, A. F. A. Rabou, A. K. Seif, and A. Masria,
“Change detection of gaza coastal zone using gis and remote sensing techniques,”
Journal of Coastal Conservation, vol. 25, no. 3, p. 36, 2021. (Cited on page 1.)
[6] M. Crowell, B. C. Douglas, and S. P. Leatherman, “On forecasting future us shoreline
positions : a test of algorithms,” Journal of Coastal Research, pp. 1245–1255, 1997.
(Cited on pages 2 and 28.)
[7] E. R. Thieler, E. A. Himmelstoss, J. L. Zichichi, and A. Ergul, “The digital shoreline
analysis system (dsas) version 4.0-an arcgis extension for calculating shoreline
change,” tech. rep., US Geological Survey, 2009. (Cited on pages 2, 35, 58, and 72.)
[8] L. Li, A. Vrieling, A. Skidmore, T. Wang, and E. Turak, “Monitoring the dynamics
of surface water fraction from modis time series in a mediterranean environment,”
157
[1] T. A. abuz, “Environmental impacts—coastal erosion and coastline changes,” Second
assessment of climate change for the Baltic Sea basin, pp. 381–396, 2015. (Cited on
pages 1 and 2.)
[2] M. E. Hereher, “Coastal vulnerability assessment for egypt’s mediterranean coast,”
Geomatics, Natural Hazards and Risk, vol. 6, no. 4, pp. 342–355, 2015. (Cited on
page 1.)
[3] M. J. Stive, S. G. Aarninkhof, L. Hamm, H. Hanson, M. Larson, K. M. Wijnberg,
R. J. Nicholls, and M. Capobianco, “Variability of shore and shoreline evolution,”
Coastal engineering, vol. 47, no. 2, pp. 211–235, 2002. (Cited on page 1.)
[4] A. Sancho-García, J. Guillén, V. Gracia, A. C. Rodríguez-Gómez, and B. RubioNicolás, “The use of news information published in newspapers to estimate the
impact of coastal storms at a regional scale,” Journal of Marine Science and Engineering, vol. 9, no. 5, p. 497, 2021. (Cited on page 1.)
[5] M. Abualtayef, M. A. Rabou, S. Afifi, A. F. A. Rabou, A. K. Seif, and A. Masria,
“Change detection of gaza coastal zone using gis and remote sensing techniques,”
Journal of Coastal Conservation, vol. 25, no. 3, p. 36, 2021. (Cited on page 1.)
[6] M. Crowell, B. C. Douglas, and S. P. Leatherman, “On forecasting future us shoreline
positions : a test of algorithms,” Journal of Coastal Research, pp. 1245–1255, 1997.
(Cited on pages 2 and 28.)
[7] E. R. Thieler, E. A. Himmelstoss, J. L. Zichichi, and A. Ergul, “The digital shoreline
analysis system (dsas) version 4.0-an arcgis extension for calculating shoreline
change,” tech. rep., US Geological Survey, 2009. (Cited on pages 2, 35, 58, and 72.)
[8] L. Li, A. Vrieling, A. Skidmore, T. Wang, and E. Turak, “Monitoring the dynamics
of surface water fraction from modis time series in a mediterranean environment,”
157
