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208                                   F. Pepe et al. / Geomorphology 303 (2018) 191–209
        Table A4 (continued)
         Year       Punta Faraglione                                 Punta Fanfalo
                    H 0 (m)    Dir (degN)    L m (m)     H b (m)     H 0 (m)     Dir (degN)   L m (m)     H b (m)
         2010       4.287      290.1         122         4.90        5.03        277.7        155.1       6.33
                    3.608      329.5         98.6        4.08        4.41        256.6        98.6        5.13
                    3.872      24.1          95          4.26
         2011       4.64       327.7         108.5       5.05        4.30        282.4        97.9        5.02
                    4.584      344           113.4       5.06        2.42        256.2        68.4        2.98
                    3.886      20.6          98.1        4.31
         2012       7.041      300.6         155.3       7.55        6.45        301.3        147.9       7.54
                    6.754      334.9         152.4       7.28        4.44        261.5        121.5       5.43
                    4.361      26            95.2        4.66
         2013       5.39       290.2         130.7       5.92        5.45        282.1        152.5       6.70
                    6.008      340.9         168.1       6.83        4.45        261.7        138.2       5.62
                    3.406      22.3          96.1        3.88
         2014       4.751      326.5         133.3       5.41        5.11        280.6        127         6.09
                    4.991      351.4         127.6       5.55        4.22        258.3        118.8       5.19
                    3.471      29.4          92.1        3.90
         2015       6.676      326.7         185.6       7.58        6.17        282.1        168.6       7.54
                    6.722      331.1         187.9       7.64        5.20        255.9        121.6       6.11
                    4.881      20.2          122.2       5.40



        References                                           Hall, A.M., Hansom, J.D., Williams, D.M., Jarvis, J., 2006. Distribution, geomorphology and
                                                                lithofacies of cliff-top storm deposits: examples from the high-energy coasts of Scot-
        Abate, B., Incandela, A., Renda, P., 1997. Carta Geologica delle Isole di Favignana e Levanzo.  land and Ireland. Mar. Geol. 232, 131–155.
        Abate, B., Ferruzza, G., Incandela, A., Renda, P., 1999. Tettonica trascorrente nelle Isole  Hansom, J.D., Barltrop, N.D.P., Hall, A.M., 2008. Modelling the processes of cliff-top erosion
          Egadi (Sicilia Occidentale). Studi Geol. Camerti 2, 9–14.  and deposition under extreme storm waves. Mar. Geol. 253:36–50. https://doi.org/
        Allmendinger, R.W., Cardozo, N.C., Fisher, D., 2012. Structural geology algorithms:  10.1016/j.margeo.2008.02.015.
          vectors & tensors. Structural Geology Algorithms https://doi.org/10.1017/  Incandela, A., 1996. Deformazioni neogeniche nelle Isole di Favignana e Levanzo (Isole
          CBO9780511920202.                                     Egadi). Mem. Soc. Geol. Ital. 51, 129–135.
        Antonioli, F., Chemello, R., Improta, S., Riggio, S., 1999. Dendropoma lower intertidal reef  Knight, J., Burningham, H., 2011. Boulder dynamics on an Atlantic-facing rock coastline,
          formations and their palaeoclimatological significance, NW Sicily. Mar. Geol. 161:  northwest Ireland. Mar. Geol. 283, 56–65.
          155–170. https://doi.org/10.1016/S0025-3227(99)00038-9.  Kogure, T., Aoki, H., Maekado, A., Hirose, T., Matsukura, Y., 2006. Effect of the development
        Balistreri, P., Chemello, R., Mannino, A.M., 2015. First assessment of the vermetid reefs  of notches and tension cracks on instability of limestone coastal cliffs in the Ryukyus,
          along the coasts of Favignana Island (Southern Tyrrhenian Sea). 6, 371–376.  Japan. Geomorphology 80, 236–244.
        Barbano, M.S., Pirrotta, C., Gerardi, F., 2010. Large boulders along the south-eastern Ionian  Liberti, L., Carillo, A., Sannino, G., 2013. Wave energy resource assessment in the Mediter-
          coast of Sicily: storm or tsunami deposits? Mar. Geol. 275, 140–154.  ranean, the Italian perspective. Renew. Energy 50, 938–949.
        Benner, R., Browne, T., Brückner, H., Kelletat, D., Scheffers, A., 2010. Boulder transport by  Maramai, A., Brizuela, B., Graziani, L., 2014. The Euro-Mediterranean tsunami catalogue.
          waves: Progress in physical modelling. Zeitschrift für Geomorphologie 54 (Suppl. 3),  Ann. Geophys. 57, 435.
          127–146.                                           Mastronuzzi, G., Pignatelli, C., 2012. The boulder berm of Punta Saguerra (Taranto, Italy):
        Besio, G., Mentaschi, L., Mazzino, A., 2016. Wave energy resource assessment in the Med-  a morphological imprint of the Rossano Calabro tsunami of April 24, 1836? Earth
          iterranean Sea on the basis of a 35-year hindcast. Energy 94, 50–63.  Planets Space 64, 829.
        Biolchi,S., Furlani,S., Antonioli,F.,Baldassini,N.,Deguara,J.C.,Devoto,S.,DiStefano,  Mastronuzzi, G., Sansò, P., 2000. Boulders transport by catastrophic waves along the Ioni-
          A.,Evans,J., Gambin, T., Gauci, R., 2016. Boulder accumulations related to ex-  an coast of Apulia (southern Italy). Mar. Geol. 170, 93–103.
          treme wave events on the eastern coast of Malta. Nat. Hazards Earth Syst. Sci.  Mastronuzzi, G., Sansò, P., 2004. Large boulder accumulations by extreme waves along the
          16, 737–756.                                          Adriatic coast of southern Apulia (Italy). Quat. Int. 120, 173–184.
        Calcagnile, L., Quarta, G., D'Elia, M., 2005. High-resolution accelerator-based mass spec-  Mastronuzzi, G., Pignatelli, C., Sansò, P., Selleri, G., 2007. Boulder accumulations produced
          trometry: precision, accuracy and background. Appl. Radiat. Isot. 62:623–629.  by the 20th of February, 1743 tsunami along the coast of southeastern Salento (Apu-
          https://doi.org/10.1016/j.apradiso.2004.08.047.       lia region, Italy). Mar. Geol. 242, 191–205.
        Catalano, R., Di Stefano, P., Sulli, A., Vitale, F.P., 1996. Paleogeography and structure of the  McKenna, J., Jackson, D.W.T., Cooper, J.A.G., 2011. In situ exhumation from bedrock of
          central Mediterranean: Sicily and its offshore area. Tectonophysics 260:291–323.  large rounded boulders at the Giant's Causeway, Northern Ireland: an alternative
          https://doi.org/10.1016/0040-1951(95)00196-4.         genesis for large shore boulders (mega-clasts). Mar. Geol. 283, 25–35.
        Catalano, R., Franchino, A., Merlini, S., Sulli, A., 2000. Central western Sicily structural  Mentaschi, L., Besio, G., Cassola, F., Mazzino, A., 2013. Developing and validating a fore-
          setting interpreted from seismic reflection profiles. Mem. Soc. Geol. Ital. 55,  cast/hindcast system for the Mediterranean Sea. J. Coast. Res. 65, 1551–1556.
          5–16.                                              Mentaschi, L., Besio, G., Cassola, F., Mazzino, A., 2015. Performance evaluation of
        D'Elia, M., Calcagnile, L., Quarta, G., Sanapo, C., Laudisa, M., Toma, U., Rizzo, A., 2004. Sam-  Wavewatch III in the Mediterranean Sea. Ocean Model 90, 82–94.
          ple preparation and blank values at the AMS radiocarbon facility of the University of  Morhange, C., Marriner, N., Pirazzoli, P.A., 2006. Evidence of Late-Holocene Tsunami
          Lecce. Nuclear Instruments and Methods in Physics Research, Section B: Beam  Events in Lebanon. Gebriider Bormraeger, D-14129 Berlin D-7Û176 Stuttgart 146,
          Interactions With Materials and Atoms:pp. 278–283 https://doi.org/10.1016/  pp. 81–95.
          j.nimb.2004.04.056.                                Nandasena, N.A.K., Paris, R., Tanaka, N., 2011. Reassessment of hydrodynamic equations:
        Engel, M., May, S.M., 2012. Bonaire's boulder fields revisited evidence for Holocene tsuna-  minimum flow velocity to initiate boulder transport by high energy events (storms,
          mi impact on the Leeward Antilles. Quat. Sci. Rev. 54, 126–141.  tsunamis). Mar. Geol. 281, 70–84.
        Etienne, S., Paris, R., 2010. Boulder accumulations related to storms on the south coast of  Nappi, R., Gaudiosi, G., Alessio, G., De Lucia, M., Porfido, S., 2017. Erratum to: The environ-
          the Reykjanes Peninsula (Iceland). Geomorphology 114, 55–70.  mental effects of the 1743 Salento earthquake (Apulia, southern Italy): a contribution
        Fisher, R., 1953. Dispersion on a sphere. Proc. R. Soc. A Math. Phys. Eng. Sci. 217:295–305.  to seismic hazard assessment of the Salento Peninsula (Nat Hazards, 10.1007/
          https://doi.org/10.1098/rspa.1953.0064.               s11069-016-2548-x). Nat. Hazards 86:325. https://doi.org/10.1007/s11069-016-
        Fukui, Y., Nakamura, M., Shiraishi, H., Sasaki, Y., 1963. Hydraulic study on tsunami. Coast.  2610-8.
          Eng. Jpn 6, 67–82.                                 Nigro, F., Renda, P., 2000. Un modello di evoluzione tettono-sedimentaria dell'avanfossa
        Furlani, S., Pappalardo, M., Gomez-Pujol, L., Chelli, A., 2014. Chapter 7. The rock coast of  Neogenica Siciliana. Boll. della Soc. Geol, Ital.
          the Mediterranean and Black seas. Geol. Soc. Lond. Mem. 40:89–123. https://  Nigro, F., Renda, P., 2001. Oblique-slip thrusting in the Maghrebide chain of Sicily. Ital.
          doi.org/10.1144/M40.7.                                J. Geosci. 120, 187–200.
        Giunta, G., Luzio, D., Agosta, F., Calò, M., Di Trapani, F., Giorgianni, A., Oliveri, E., Orioli, S.,  Noormets, R., Crook, K.A.W., Felton, E.A., 2004. Sedimentology of rocky shorelines: 3: hy-
          Perniciaro, M., Vitale, M., Chiodi, M., Adelfio, G., 2009. An integrated approach  drodynamics of megaclast emplacement and transport on a shore platform, Oahu,
          to investigate the seismotectonics of northern Sicily and southern Tyrrhenian.  Hawaii. Sediment. Geol. 172, 41–65.
          Tectonophysics 476:13–21. https://doi.org/10.1016/j.tecto.2008.09.031.  Nott, J., 1997. Extremely high-energy wave deposits inside the Great Barrier Reef,
        Goto, K., Okada, K., Imamura, F., 2009. Characteristics and hydrodynamics of boulders  Australia: determining the cause—tsunami or tropical cyclone. Mar. Geol. 141,
          transported by storm waves at Kudaka Island, Japan. Mar. Geol. 262, 14–24.  193–207.
        Gueguen, E., Tavarnelli, E., Renda, P., Tramutoli, M., 2002. The geodynamics of the south-  Nott, J., 2003. Tsunami or storm waves?: determining the origin of a spectacular field of
          ern Tyrrhenian Sea margin as revealed by integrated geological, geophysical and geo-  wave emplaced boulders using numerical storm surge and wave models and hydro-
          detic data. Boll. Soc. Geol. Ital. 1, 77–85.          dynamic transport equations. J. Coast. Res. 348–356.
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