Persian References:
-Abedini, A., Saket Hasanlouei, M. and Azhari, A., 2020. Development of natural tourism (coastal) with the approach of enhancing the sustainability of the natural landscape, Case study: Hasanlu Dam Scope of Naqadeh. Journal of Tourism Planning and Development, v. 9(32), p. 107-122.
-Azmoudeh, A. and Jaefari, A., 2007. Study the thirteen year trend of changes in the water level of the Caspian Sea through satellite altimetry. The Journal of Earth and Space Physics, v. 33(1), p. 21-30.
-Najafi Disfani, M., 1998. Computer processing of remote sensing images (translation). The Organization for Researching and Composing of University Textbooks in the Islamic Sciencess and the Humanities (SAMT), Tehran, 445 p.
-Qangarmeh, A., 2010. Water fluctuations of the Caspian Sea (water year 1387-1388) and environmental factors affecting it. Research project report. National Center for Caspian Studies, 96 p.
-Ranjbar, M., 2009. Fluctuation of the Caspian Sea water level and its effect on the formation of landforms due to the dynamics of the sea and rivers (Case study of Talesh Township). The Journal of Quarterly Geographical of Territory, v. 6(3), p. 119-134.
-Samakosh, M.A., Farzan, F., Dousti, M. and Honarvar, A., 2018. Identification of attracting and deterrent factors in the development of coastal tourism (Case study: active sport tourists visiting Caspian Sea coastal regions). Journal of Teaching in Marine Sciences, v. 5(2), p. 96-108.
-Sharifikia, M., Shayan, S. and Vali, M., 2017. Determining the dynamic changes of the shoreline of the eastern part of the Caspian Sea using multi-time / multi-gauge data. The Journal of Spatial Planning, v. 21(4), p. 122-139.
-Verdipasandi, Z., 2019. Opportunities and challenges in coastal tourism (Case study: west of Mazandaran). Journal of Tourism Research and Sustainable Development, v. 2(2), p. 17-22.
-Yousefi Roshan, M.R. and Kordvani, P., 1392. Fluctuation of water level and frontage efficiency of the Caspian Sea (coastline of Babolsar Township). Journal of Researches in Earth Sciences, v. 14, p. 1-16.
English References:
-Alesheikh, A.A., Ghorbanali, A. and Nouri, N., 2007. Coastline change detection using remote sensing. Int. J. Science Technology, v. 4(1), p. 61-66.
-Bayram, B., Bayraktar, H., Helvaci, C. and Acar, U., 2004. Coastline change detection using CORONA, SPOT and IRS 1D images. XXth Congress Int. Soc. Photogram. Remote Sens., Commission VII, WG VII/3, p. 437-441.
-Brezgunov, V.S., Nechaev, V.V. and Yakimova, T.V., 1987. Studying Water Exchange in the Northern Caspian Sea Based on the Distribution of the Oxygen Isotopic Composition of Water, Vodn. Resur., v. 1, p. 155-161.
-Deng, J.S., Wang, K., Deng, Y.H. and Qi, G.J., 2008. PCA based land-use change detection and analysis using multi temporal and multi sensor satellite data. International Journal of Remote Sensing, v. 29(16), p. 4823-4838.
-Doygun, H., Berberolu, S. and Alphan, H., 2003. The Determination of Land Use Changes by Using Remote Sensing in Burnaz Coastal Dunes, Hatay. Ekoloji, v. 12(48), p. 4-9.
-Duran, Z., Musaoglu, N. and Seker, Z.D., 2006. Evaluating urban land use change in historical peninsula, Istanbul, by using GIS and Remote Sensing. Fresenius Environ. Bull, v. 15(8a), p. 806-810.
-Firoozfar, A., Bromhead, E.D., Dykes, A.P. and Lashteh Neshaei, M.A., 2012. Southern Caspian Sea coasts, morphology, sediment characteristics, and sea level change. Proceedings of the Annual International Conference on Soils, Sediments, Water and Energy, v. 17, p. 123-150.
-Jarratt, D. and Davies, N.J., 2020. Planning for climate change impacts: coastal tourism destination resilience policies. Tourism Planning and Development, v. 17(4), p. 423-4440.
-Kakroodi, A.A., Krooneberg, S.B., Hoogendoorn, R.M., Mohaammad khani, H., Yamani, M. and Ghassemi, R., 2012. Rapid holocen sea level changes along the Iranian Caspian coast. Journal of Quaternary International, v. 263, p. 93-103.
-Karaburun, A. and Demirci, A., 2009. The Changing Risks of Agricultural Activities on Water Resources in Rapidly Urbanized Areas: Agricultural Land Cover Change in Istanbul between 1987 and 2007. Fresenius Environmental Bull, v. 18(11a), p. 2181-2191.
-Kosarev, A.N. and Tuzhilkin V.S., 1997. Climatic annual cycle of the Caspian Sea thermohaline structure variability. Water Resources, v. 2, p. 104-112.
-Kroonenberg, S.B., Kasimov, N.S. and Lychagin, M., 2008. The Caspian Sea, a natural laboratory for sea-level change. Geography, v. 12, p. 22-37.
-Krueger, P.C., Goncalves, R., Krueger, T. and Leonardo Xavier, E., 2008. Mapping and detection of changes for shoreline using a spatiotemporal CGIS (Coastal Geographic Information System), Alumni Experten seminar “Naturkatastrophen – Katastrophenmanagement und – prävention” Santiago de Chile, 30.03.2008 - 02.0.4.2008.
-Lithgowac, D., Martínezb, M.L., Gallego-Fernández, J.B., Silva, R. and Ramírez-Vargasc, D.L., 2019. Exploring the co-occurrence between coastal squeeze and coastal tourism in a changing climate and its consequences. Tourism Management, v. 74, p. 43-54.
-Maktav, D. and Erbek, F.S., 2005. Analysis of urban growth using multi-temporal satellite data in Istanbul, Turkey'. International Journal of Remote Sensing, v. 26(4), p. 797-810.
-Nidhinarangkoon, P., Ritphring, S. and Udo, K., 2020. Impact of sea level rise on tourism carrying capacity in Thailand. Marine Science and Engineering, v. 104(8), p. 1-10.
-Richards, J. and Jia, X., 1998. Remote sensing digital image analysis. Berlin, Third edition. Pub. Springer, 331 p.
-Rychagov, G.I., Leont'ev, O.K., Nikiforov, L.G., Lukashov, A.A., Ignatov, E.I. and Bolysov, S.I., 1984. Special Geomorphological Training Practical in Dagestan. Moscow University Ed., 132 p.
-Tağil, S. and Cϋrebal, I., 2005. Remote Sensing and GIS Monitoring of Coastline Change in Altınova Coast. Fırat University Social Science Journal, v. 15(2), p. 51-68.
-Tai-Wen, H., Tsung-Yi, L. and I-Fan, T., 2007. Human Impact on Coastal Erosion in Taiwan, Florida. Journal of Coastal Researches, West Palm Beach, v. 4(23), p. 961-973.