https://doi.org/10.5194/nhess-2020-359 Preprint. Discussion started: 13 November 2020 c Author(s) 2020. CC BY 4.0 License. 1 Extremes floods of Venice: characteristics, dynamics, past and 2 future evolution 3 4 5 Piero Lionello1, David Barriopedro2, Christian Ferrarin3, Robert J. Nicholls5, Mirko Orlic4, Fabio 6 Raicich6, Marco Reale7, Georg Umgiesser3, Michalis Vousdoukas8, Davide Zanchettin9 7 8 1University of Salento, DiSTeBA - Department of Biological and Environmental Sciences and Technologies, via per 9 Monteroni, 165, Lecce, Italy and EuroMediterranean Center on Climate Change 10 2Instituto de Geociencias (IGEO), CSIC-UCM, C/Doctor Severo Ochoa 7, 28040 Madrid, Spain 11 3CNR - National Research Council of Italy, ISMAR - Marine Sciences Institute, Castello 2737/F, 30122, Venezia, Italy 12 4Department of Geophysics, Faculty of Science, University of Zagreb, Croatia 13 5Tyndall Centre for Climate Change Research, University of East Anglia. Norwich NR4 7TJ, United Kingdom 14 6CNR, Institute of Marine Sciences, AREA Science Park Q2 bldg., SS14 km 163.5, Basovizza, 34149 Trieste, Italy 15 7Abdus Salam ICTP and National Institute of Oceanography and Applied Geophysics - OGS, via Beirut 2-4, Trieste, Italy 16 8European Commission, Joint Research Centre (JRC), Ispra, Italy 17 9University Ca’ Foscari of Venice, Dept. of Environmental Sciences, Informatics and Statistics, Via Torino 155, 30172 18 Mestre, Italy 19 20 Correspondence to: Piero Lionello (
[email protected]) 21 Abstract 22 Floods in the Venice city centre result from the superposition of several factors: astronomical tides, seiches and 23 atmospherically forced fluctuations, which include storm surges, meteotsunamis, and surges caused by planetary waves. 24 All these factors can contribute to positive sea-level anomalies individually and can also result in extreme sea-level events 25 when they act constructively.