Tzanakakis, V. A., & συν. (2022). The Case Study of Municipality of Sfakia, Crete, Greece — μελέτη που περιλαμβάνει στοιχεία για τις βροχοπτώσεις στην ευρύτερη περιοχή της Σφακιάς, καθώς και την κατανομή των κλιματικών ζωνών στην Κρήτη. MDPI Zanis, P., Georgoulias, A. K., Velikou, K., Akritidis, D., Kalisoras, A., & Melas, D. (2024). Future Projections of Precipitation Extremes for Greece Based on an Ensemble of High-Resolution Regional Climate Model Simulations. Atmosphere, 15(5), 601. — προβλέψεις για ακραίες τιμές βροχοπτώσεων στο μέλλον, συμπεριλαμβανομένης της Κρήτης. MDPI Politi, N., Vlachogiannis, D., Sfetsos, A., Nastos, P. T. κ.ά. (2023). High resolution projections for extreme temperatures and precipitation over Greece — μαθηματικά μοντέλα (WRF) για θερμοκρασίες και βροχοπτώσεις, με αναφορές στις μελλοντικές αλλαγές, και ειδικά επιπτώσεις στα νησιά, συμπεριλαμβανομένης της Κρήτης. SpringerLink Agou, V. D., Varouchakis, E. A., & Hristopulos, D. T. (2019). Geostatistical analysis of precipitation in the island of Crete (Greece) based on a sparse monitoring network. Environmental Monitoring and Assessment. — αν και ξεκινάει πριν το 2015, είναι πολύ σχετικό γιατί αναλύει την κατανομή των βροχοπτώσεων στην Κρήτη και τις χωρικές διαφοροποιήσεις (Δυτικά — Ανατολικά). Agou, V. D., Varouchakis, E. A., & Hristopulos, D. T. (2019). Geostatistical analysis of precipitation in the island of Crete (Greece) based on a sparse monitoring network. Environmental Monitoring and Assessment, 191(5), 298. https://doi.org/10.1007/s10661-019-7435-7 Politi, N., Vlachogiannis, D., Sfetsos, A., Nastos, P. T., Zanis, P., & Kapsomenakis, J. (2023). High-resolution projections for extreme temperatures and precipitation over Greece. Climate Dynamics, 60(3–4), 841–857. https://doi.org/10.1007/s00382-022-06590-w Tzanakakis, V. A., Paranychianakis, N. V., & Angelakis, A. N. (2022). The case study of the Municipality of Sfakia, Crete, Greece. Water, 14(3), 462. https://doi.org/10.3390/w14030462 Zanis, P., Georgoulias, A. K., Velikou, K., Akritidis, D., Kalisoras, A., & Melas, D. (2024). Future projections of precipitation extremes for Greece based on an ensemble of high-resolution regional climate model simulations. Atmosphere, 15(5), 601. https://doi.org/10.3390/atmos15050601 Βιβλιογραφία Fassoulas, C., & Iliopoulos, G. (2022). Geomorphological evolution and active tectonics of southern Crete (Greece): insights from fluvial terraces and drainage analysis. Geomorphology, 405, 108211. IGME (2020). Geological Map of Crete, Sheet Ierapetra. Athens: Institute of Geological and Mineral Exploration. Pavlopoulos, K., Panagos, P., & Petropoulos, G. (2021). Hydro-geomorphological characteristics and flash flood potential in small Mediterranean catchments of Crete. Catena, 203, 105342. Zervakis, M., & Vrontaki, A. (2023). River morphology and sediment transport in steep Mediterranean basins: the case of southeastern Crete. Environmental Earth Sciences, 82(5), 211. Arnold, J. G., Moriasi, D. N., Gassman, P. W., Abbaspour, K. C., White, M. J., Srinivasan, R., … & Kannan, N. (2012). SWAT: Model use, calibration, and validation. Transactions of the ASABE, 55(4), 1491–1508. EEA (European Environment Agency). (2000). Corine Land Cover 2000 (CLC2000) – Technical Guidelines. Luxembourg: Office for Official Publications of the European Communities. Fassoulas, C., & Iliopoulos, G. (2022). Geomorphological evolution and active tectonics of southern Crete (Greece): insights from fluvial terraces and drainage analysis. Geomorphology, 405, 108211. IGME (2020). Geological Map of Crete, Sheet Ierapetra. Athens: Institute of Geological and Mineral Exploration. Pavlopoulos, K., Panagos, P., & Petropoulos, G. (2021). Hydro-geomorphological characteristics and flash flood potential in small Mediterranean catchments of Crete. Catena, 203, 105342. Zervakis, M., & Vrontaki, A. (2023). River morphology and sediment transport in steep Mediterranean basins: the case of southeastern Crete. Environmental Earth Sciences, 82(5), 211. ACI (2019). Roller Compacted Concrete. American Concrete Institute. Chanson, H. (2020). Hydraulics of Spillways and Energy Dissipators. CRC Press. FAO (2020). Global Water Resources Report. Food and Agriculture Organization. Fell, R., et al. (2018). Geotechnical Engineering of Dams. CRC Press. Foster, M. & Fell, R. (2022). "Dam Safety and Risk Assessment", Engineering Geology Journal, 295, 106–120. ICOLD (2020). Dams and the World’s Water Resources. International Commission on Large Dams. IEA (2021). Hydropower Special Market Report. International Energy Agency. UNEP (2021). Climate Change and Flood Management. United Nations Environment Programme. USBR (2020). Design of Gravity and Buttress Dams. U.S. Bureau of Reclamation. WWF (2020). Sustainable Hydropower Guidelines. World Wildlife Fund. Zarfl, C., et al. (2019). "Future Hydropower Expansion and its Impact", Global Environmental Change, 57, 101–112. Zhang, Y., Liu, H., & Wei, X. (2021). "Hard-fill Dams and Seismic Behavior", Journal of Hydraulic Engineering, 147(6). Μιμίκου, Μ. (2006). Υδρολογία και Διαχείριση Υδατικών Πόρων. Αθήνα: Εθνικό Μετσόβιο Πολυτεχνείο. Μιμίκου, Μ., & Κουμάντακη, Ε. (2008). Έργα Ρύθμισης και Διαχείρισης Υδατικών Πόρων. Αθήνα: Εθνικό Μετσόβιο Πολυτεχνείο. Λουκάς, Α., & Βαφειάδης, Μ. (2011). Διαχείριση Υδατικών Πόρων στην Ελλάδα. Αθήνα: Τεχνικό Επιμελητήριο Ελλάδας. Ξένη βιβλιογραφία FAO (2020). Dams and reservoirs under changing climate conditions. Food and Agriculture Organization of the United Nations, Rome. UNEP (2021). Water storage and sustainable water management. United Nations Environment Programme, Nairobi.