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
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
