- مرکز ملی مطالعات و تحقیقات دریای خزر. (1385). خزر توهمات و واقعیات، ترجمه: علی شمسی فولادی، نویسنده: ایگور س. زون، وزارت نیرو-موسسه تحقیقات آب.
- Arpe, K., & Leroy, S. (2007). The Caspian Sea Level Forced by the Atmospheric Circulation, as Observed and Modelled. Quaternary International, 173, 1-21.
- Ataei H, S., Jabari Kh, A., Khakpour, A. M., Neshaei, S. A., & Yosefi Kebria, D. (2019). Long-term Caspian Sea level variations based on the ERA-interim model and rivers discharge. International Journal of River Basin Management, 17(4), 507-516.
- Chen, J. L., Pekker, T., Wilson, C. R., Tapley, B. D., Kostianoy, A. G., Cretaux, J. F., & Safarov, E. S. (2017). Long‐term Caspian Sea level change. Geophysical Research Letters, 44(13), 6993-7001.
- Dyakonov, G. S., & Ibrayev, R. A. (2018). Reproduction of interannual variability of the Caspian Sea level in a high-resolution hydrodynamic model. Oceanology, 58(1), 8-18.
- Elguindi, N., & Giorgi, F. (2006). Projected changes in the Caspian Sea level for the 21st century based on the latest AOGCM simulations. Geophysical Research Letters, 33, 1-12.
- Elguindi, N., & Giorgi, F. (2007). Simulating future Caspian sea level changes using regional climate model outputs. Climate dynamics, 28(4), 365-379.
- Elguindi, N., & Giorgi, F. (2006). Simulating multi-decadal variability of Caspian Sea level changes using regional climate model outputs. Climate dynamics, 26(2), 167-181.
- Ghanghermeh, A., Roshan, G., Orosa, J.A., & Costa, Á.M. (2019). Analysis and Comparison of Spatial–Temporal Entropy Variability of Tehran City Microclimate Based on Climate Change Scenarios. Entropy , 21, 1-13.
- Hajima, T., Abe, M., Arakawa, O., Suzuki, T., Komuro, Yo., Ogura, T., Ogochi, K., Watanabe, M., Yamamoto, A., Tatebe, H., Noguchi, Maki A., Ohgaito, R., Ito, A., Yamazaki, D., Ito, A., Takata, K., Watanabe, S., Kawamiya, M., Tachiiri, K. (2019). MIROC MIROC-ES2L model output prepared for CMIP6 CMIP piControl. Earth System Grid Federation. https://doi.org/10.22033/ESGF/CMIP6.5710.
- Hoseini, S. M., & Soltanpour, M. (2020). LONG-TERM PREDICTION OF CASPIAN SEA LEVEL UNDER CMIP6 SCENARIOS USING ARTIFICIAL NEURAL NETWORKS. Coastal Engineering Proceedings, (36v), 5-5.
- IPCC, (2021). Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S. L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L.Goldfarb, M. I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T. K. Maycock, T. Waterfield,O. Yelekçi, R. Yu and B. Zhou (eds.)]. Cambridge University Press. In Press.
- Jungclaus, J., Bittner, M., Wieners, K-H., Wachsmann, F., Schupfner, M., Legutke, S., Giorgetta, M., Reick, Ch., Gayler, V., Haak, H., de Vrese, P., Raddatz, T., Esch, M., Mauritsen, T., von Storch, Jin-Song., & Roeckner, Erich (2019). MPI-M MPI-ESM1.2-HR model output prepared for CMIP6 CMIP piControl. Earth System Grid Federation. https://doi.org/10.22033/ESGF/CMIP6.6674.
- Kaftan, V., Komitov, B., & Lebedev, S. (2018). Analysis of sea level changes in the Caspian Sea related to Cosmo-geophysical processes based on satellite and terrestrial data. Geodesy and Geodynamics, 9(6), 449-455.
- Koriche, S. A., Singarayer, J. S., & Cloke, H. L. (2021). The fate of the Caspian Sea under projected climate change and water extraction during the 21st century. Environmental Research Letters, 16(9), 094024.
- Klige, R. K., & Myagkov, M. S. (1992). Changes in the water regime of the Caspian Sea. Geojournal, 27(3), 299-307.
- Koriche, S. A., Nandini‐Weiss, S. D., Prange, M., Singarayer, J. S., Arpe, K., Cloke, H. L., ... & Coe, M. (2021). Impacts of Variations in Caspian Sea Surface Area on Catchment‐Scale and Large‐Scale Climate. Journal of Geophysical Research: Atmospheres, 126(18), e2020JD034251.
- Naderi Beni, A. B. D. O. L. M. A. J. I. D., Lahijani, H., Mousavi Harami, R., Arpe, K., Leroy, S. A. G., Marriner, N., ... & Reimer, P. J. (2013). Caspian sea-level changes during the last millennium: historical and geological evidence from the south Caspian Sea. Climate of the Past, 9(4), 1645-1665.
- Ozyavas, A., Khan, S. D., & Casey, J. F. (2010). A possible connection of Caspian Sea level fluctuations with meteorological factors and seismicity. Earth and Planetary Science Letters, 299(1-2), 150-158.
- Panin, G. N., & Diansky, N. A. (2014). On the correlation between oscillations of the Caspian Sea level and the North Atlantic climate. Izvestiya, Atmospheric and Oceanic Physics, 50(3), 266-277.
- Panin, G. N., Solomonova, I. V., & Vyruchalkina, T. Y. (2014). Regime of water balance components of the Caspian Sea. Water resources, 41(5), 505-511.
- Serykh, I. V., & Kostianoy, A. G. (2020). The links of climate change in the Caspian Sea to the Atlantic and Pacific Oceans. Russian Meteorology and Hydrology, 45(6), 430-437.
- Volodin, Evgeny; Mortikov, Evgeny; Gritsun, Andrey; Lykossov, Vasily; Galin, Vener; Diansky, Nikolay; Gusev, Anatoly; Kostrykin, Sergey; Iakovlev, Nikolay; Shestakova, Anna; Emelina, Svetlana (2019). INM INM-CM4-8 model output prepared for CMIP6 CMIP piControl. Earth System Grid Federation. https://doi.org/10.22033/ESGF/CMIP6.5080.
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