Andredaki, M., Georgoulas, A., Hrissanthou, V., & Kotsovinos,
N. (2014). Assessment of reservoir sedimentation effect on
coastal erosion in the case of Nestos River, Greece.
International Journal of Sediment Research, 29(1), 34–48.
Volume. https://doi.org/10.1016/S1001-6279(14)60020-2
Annibale Guariglia, A., Buonamassa, A., Angela, L., Rocco,
S., Maria, T., Angelo, Z., & Antonio, C. (2009). A multisource approach for coastline mapping and identification
of shoreline changes. Annals of Geophysics, 49. https://
doi.org/10.4401/ag-3155
Antonello, A., Filomena, C., Guido, P., & Giuseppe, S.
(2013). Shoreline variations and coastal dynamics: A
space-time data analysis of the Jonian littoral, Italy.
Estuarine, Coastal and Shelf Science, 129, 124–135.
https://doi.org/10.1016/j.ecss.2013.06.012
Antonello, A., Maria, A., & Filomena, C. (2015). Remote sensing and GIS to assess soil erosion with RUSLE3D and
USPED at river basin scale in southern Italy. CATENA,
131, 174–185. https://doi.org/10.1016/j.catena.2015.04.003
Aris, M. M., Hussein, A., Dey, S., Susanto, B., & Lorenz, K.
(2008). Coastal dynamic and shoreline mapping: Multisources spatial data analysis in Semarang Indonesia.
Environmental Monitoring and Assessment, 142(1–3),
297–308. https://doi.org/10.1007/s10661-007-9929-2
Asib, A., Frances, D., Rizwan, N., & Clare, W. (2018). Where is
the coast? Monitoring coastal land dynamics in Bangladesh:
An integrated management approach using GIS and remote
sensing techniques. Ocean & Coastal Management, 151, 10–
24. https://doi.org/10.1016/j.ocecoaman.2017.10.030
Ayadi, K., Boutiba, M., Sabatier, F., & Guettouche, M. S.
(2016). Detection and analysis of historical variations in
the shoreline, using digital aerial photos, satellite images,
and topographic surveys DGPS: Case of the Bejaia bay
(East Algeria). Arabian Journal of Geosciences, 9(1), 26.
https://doi.org/10.1007/s12517-015-2043-9
Bakhoum, P. W., Ndour, A., Niang, I., Sambou, B., Traore,
V. B., Diaw, A. T., Sambou, H., & Ndiaye, M. L. (2017).
Coastline mobility of Goree Island (Senegal) from 1942 to
2011. Marine Science, 7(1), 1–9. https://doi.org/10.5923/j.
ms.20170701.01
Behling, B. R., Milewski, M. R., & Chabrillat, C. S. (2018).
Spatiotemporal shoreline dynamics of Namibian coastal
lagoons derived by a dense remote sensing time series
approach. International Journal of Applied Earth
Observation and Geoinformation, 68, 262–271. https://
doi.org/10.1016/j.jag.2018.01.009
Bera, R., & Maiti, R. (2019). Quantitative analysis of erosion
and accretion (1975-2017) using DSAS — A study on
Indian Sundarbans. Regional Studies in Marine Science,
28, 100583. https://doi.org/10.1016/j.rsma.2019.100583
Bird, E. (2008). Coastal geomorphology: An introduction
(2nd ed ed.). Wiley.
Bouchahma, M., Yan, W., Wanglin, M., & Mohamed, O.
(2012). Island coastline change detection based on image
processing and remote sensing. Computer and
Information Science, 5(3), 27–36. https://doi.org/10.
5539/cis.v5n3p27
Brock, J., Sallenger, A., Krabill, W. B., Swift, R., & Wright, C.
(2001). Recognition of fiducial surfaces in lidar surveys of
coastal topography. Photogrammetric Engineering and
Remote Sensing, 67(11), 1245–1258. https://www.research
gate.net/publication/287562794_Recognition_of_
Fiducial_Surfaces_in_Lidar_Surveys_of_Coastal_
Topography
Bulent, B. B., Huseyin Bayraktar, H., Helvaci, C., & Ugur, A.
(2004). Coastline change detection using Corona, Spot and
IRS 1d images. https://www.researchgate.net/publication/
237414716_Coast_line_change_detection_using_
Corona_Spot_and_IRS_1d_images
Bu-Li, C., & Xiao-Yan, L. (2011). Coastline change of the
Yellow River estuary and its response to the sediment and
runoff (1976–2005). Geomorphology, 127(1–2), 32–40.
https://doi.org/10.1016/j.geomorph.2010.12.001
Burningham, B. H., & French, F. J. (2017). Understanding
coastal change using shoreline trend analysis supported
by cluster-based segmentation. Geomorphology, 282, 131–
149. https://doi.org/10.1016/j.geomorph.2016.12.029
Cabezas-Rabadán, C., Pardo-Pascual, J. E., Palomar-Vázquez,
J., & Fernández-Sarría, A. (2019). Characterizing beach
changes using high-frequency Sentinel-2 derived shorelines on the Valencian coast (Spanish Mediterranean).
Science of the Total Environment, 691, 216–231. https://
doi.org/10.1016/j.scitotenv.2019.07.084
Carolina, M., Manuel, C.-L., Patricio, W., Héctor, H.,
Eduardo, G., & Roberto, A. (2018). Coastal erosion in
central Chile: A new hazard?. Ocean & Coastal
Management, 156, 141–155. https://doi.org/10.1016/j.oce
coaman.2017.07.011
Casella, E., Rovere, A., Pedroncini, A., Stark, C. P., Casella,
M., Ferrari, M., & Firpo, M. (2016). Drones as tools for
monitoring beach topography changes in the Ligurian
Sea (NW Mediterranean). Geo-Mar. Lett, 36(2), 151–
163. https://doi.org/10.1007/s00367-016-0435-9
Chand, P., & Acharya, P. (2010). Shoreline change and sea
level rise along coast of Bhitarkanika wildlife sanctuary,
Orissa: An analytical approach of remote sensing and
statistical techniques. International Journal of Geomatics
and Geosciences, 28(1), 436–455. https://www.research
gate.net/publication/301772465
Charles, F., Rooney, J., Matthew, B., Lim, S. C., & Bruce, R.
(2003). Mapping shoreline change using digital orthophotogrammetry on Maui, Hawaii. Journal of Coastal
Research, 38,106–124. https://www.jstor.org/stable/
25736602
Chen, B., Benqing, Y., Yanming, Y., Wen, H., Hongtao, H.,
Hailin, R., Zaiming Zhou, Z., Kai Luo, K., & Fuhuang
Zhong, F. (2018). High-resolution monitoring of beach
topography and its change using unmanned aerial vehicle
imagery. Ocean & Coastal Management, 160, 103–116.
https://doi.org/10.1016/j.ocecoaman.2018.04.007
Chen, C. C., Jiaoqi, F., Shuai, Z., & Xin, Z. (2019). Coastline
information extraction based on the tasseled cap transformation of Landsat-8 OLI images. Estuarine, Coastal
and Shelf Science, 217, 281–291. https://doi.org/10.1016/j.
ecss.2018.10.021
Chen, S.-S., Chen, L.-F., Liu, Q.-H., Xia, L., & Tan, Q.
(2005). Remote sensing and GIS-based integrated analysis of coastal changes and their environmental impacts in
Lingding Bay, Pearl River Estuary, South China. Ocean &
Coastal Management, 48(1), 65–83. https://doi.org/10.
1016/j.ocecoaman.2004.11.004
Chen, -W.-W., & Chang, H.-K. (2009). Estimation of shoreline position and change from satellite images considering tidal variation. Estuarine Coastal and SHELF Science -
ESTUAR COAST SHELF SCI, 84(1), 54–60. https://doi.
org/10.1016/j.ecss.2009.06.002
Christopher, D., Mitchell, H., Ian, T., Matheen, A.,
Nashwan, A., & Will, G. (2015). UAV applications to
coastal engineering. Auckland, New Zealand. https://
www.researchgate.net/publication/282606382_UAV_
Applications_to_Coastal_Engineering
Coastal Engineering Research Center (CERC). (1984). Shore
protection manual. US Army Corps of Engineers,
Washington DC, I, 597. II, 603. https://www.scirp.org/(S
260
D. APOSTOLOPOULOS AND K. NIKOLAKOPOULOS
Précédent

- 22/27

Suivant