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    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Pisa, Pisa, Italia, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OV, Napoli, Italia

    وصف الملف: application/pdf

    Relation: Annals of Geophysics; 5/66 (2023); Abbruzzese, D (1936). Sulla catastrofica esplosione dello Stromboli dell’11 settembre del 1930, Atti Accad. Gioenia Sc. Nat. Catania 1, 1-33.Apuani, T., C. Corazzato, A. Cancelli and A. Tibaldi (2005). Physical and mechanical properties of rock masses at Stromboli: a dataset for volcano instability evaluation, Bull. Engin. Geol. Environ., 64, 419-431.Areu-Rangel, O.S., R. Bonasia, F. Di Traglia, M. Del Soldato and N. Casagli (2020). Flood susceptibility and sediment transport analysis of Stromboli Island after the 3 July 2019 paroxysmal explosion, Sustainability, 12, 8, 3268.Barberi, F., M. Rosi, and A. Sodi (1993). Volcanic hazard assessment at Stromboli based on review of historical data, Acta Vulcanol., 3, 173-187.Bertagnini, A., A. Di Roberto and M. Pompilio (2011). Paroxysmal activity at Stromboli: lessons from the past, Bull. Volcanol., 73, 9, 1229-1243Bevilacqua, A., A. Bertagnini, M. Pompilio, P. Landi, P. Del Carlo, A. Di Roberto, W. Aspinall and A. Neri (2020). Major explosions and paroxysms at Stromboli (Italy): A new historical catalog and temporal models of occurrence with uncertainty quantification, Scientific reports, 10(1), 17357.Bisson, M., M. Favalli, A. Fornaciai, F. Mazzarini, I. Isola, G. Zanchetta and M.T. Pareschi (2005). A rapid method to assess fire-related debris flow hazard in the Mediterranean region: An example from Sicily (southern Italy), Int. J. Appl. Earth Obsserv. Geoinfo., 7, 3, 217-231.Di Roberto, A., M. Rosi, A. Bertagnini, M.P. Marani and F. Gamberi (2010). Distal turbidites and tsunamigenic landslides of Stromboli volcano (Aeolian Islands, Italy), In Submarine Mass Movements and Their Consequences; Springer: Dordrecht, The Netherlands, 719-731.Di Roberto, A., A. Bertagnini, M. Pompilio and M. Bisson (2014). Pyroclastic density currents at Stromboli volcano (Aeolian Islands, Italy): A case study of the 1930 eruption, Bull. Volcanol, 76, 827.Di Traglia, F.A. Fornaciai, M. Favalli, T. Nolesini and N. Casagli (2020). Catching Geomorphological Response to Volcanic Activity on Steep Slope Volcanoes Using Multi-Platform Remote Sensing, Remote Sens., 12, 438.Favalli, M., A. Fornaciai, F. Mazzarini, A. Harris, M. Neri, B. Behncke, M.T. Pareschi, S. Tarquini and E. Boschi (2010). Evolution of an active lava flow field using a multitemporal LIDAR acquisition, J. Geophys. Res., Solid Earth, 115, B11.Favalli, M., A. Fornaciai, I. Isola, S. Tarquini and L. Nannipieri (2012). Multiview 3D reconstruction in geosciences, Compu. Geosci., 44, 168-176.Favalli, M. and A. Fornaciai (2017). Visualization and comparison of DEM-derived parameters. Application to volcanic areas, Geomorphology, 290, 69-84.Favalli, M., A. Fornaciai, L. Nannipieri, A. Harris, S. Calvari and C. Lormand (2018). UAV-based remote sensing surveys of lava flow fields: a case study from Etna’s 1974 channel-fed lava flows, Bull. Volcanol., 80, 3, 1-18.Fornaciai, A., M. Bisson, P. Landi, F. Mazzarini and M.T. Pareschi (2010). A LiDAR survey of Stromboli volcano (Italy): Digital elevation model-based geomorphology and intensity analysis, Int. J. Remote Sens., 31(12), 3177-3194.Giordano, G. and G. De Astis (2021). The summer 2019 basaltic Vulcanian eruptions (paroxysms) of Stromboli, Bull. Volcanol., 83, 1.Giovannini, G. (1994). The effect of fire on soil quality. Soil erosion as a consequence of forest fires, Geoforma Ediciones, Logroño, 15-27.Giovannini, G., R. Vallejo, S. Lucchesi, S. Bautista, S. Ciompi and J. Llovet (2001). Effects of land use and eventual fire on soil erodibility in dry Mediterranean conditions, Forest Ecology and Management, 147, 1, 15-23. Luca Nannipieri et al.12Höhle, J. and M. Höhle (2009). Accuracy assessment of digital elevation models by means of robust statistical methods, ISPRS Journal of Photogrammetry and Remote Sensing, 64, 4, 398-406.https://www.ct.ingv.it/index.php/formazione-e-divulgazione/news/328-l-alluvione-di-stromboli-del-12-agosto-2022.James, M.R., B. Carr, F. D’Arcy, A. Diefenbach, H. Dietterich, A. Fornaciai, E. Lev, E.J. Liu, D.C. Pieri, M. Rodgers, B. Smets, A. Terada, F.W. von Aulock, T.R. Walter, KT. Wood and E. Zorn (2020). Volcanological applications of unoccupied aircraft systems (UAS): Developments, strategies, and future challenges, Volcanica, 3, 1, 67-114.Ortíz-Rodríguez, A.J., C. Muñoz-Robles and L. Borselli (2019). Changes in connectivity and hydrological efficiency following wildland fires in Sierra Madre Oriental, Mexico, Sci. Total Environ., 655, 112-128.Providoli, I., H. Elsenbeer and M. Conedera (2002). Post-fire management and splash erosion in a chestnut coppice in southern Switzerland, Forest ecology and management, 162, 2-3, 219-229.Rittmann, A.D. (1931). Ausbruch des Stromboli am 11 September 1930, Zeits. Vulkanol., 14, 47-77.Romagnoli, C., P. Kokelaar, D. Casalbore, F.L. Chiocci (2009). Lateral collapses and active sedimentary processes on the northwestern flank of Stromboli volcano, Italy. Mar. Geol., 265, 101-119.Rosi, M., M. Pistolesi, A. Bertagnini, P. Landi, M. Pompilio and A. Di Roberto (2013). Chapter 14 Stromboli volcano, Aeolian Islands (Italy): present eruptive activity and hazards, Geological Society, London, Memoirs, 37, 1, 473-490.Tibaldi, A. (2001). Multiple sector collapses at Stromboli volcano, Italy: How they work, Bull. Volcanol., 63, 112-125.Thouret, J.C., S. Antoine, C. Magill and C. Ollier (2020). Lahars and debris flows: Characteristics and impacts, Earth-Sci. Rev., 201, 103003.Turchi, A., F. Di Traglia, T. Luti, D. Olori, I. Zetti and R. Fanti (2020). Environmental aftermath of the 2019 Stromboli eruption, Remote Sens., 12(6), 994.Turchi, A., F. Di Traglia, R. Gentile, A. Fornaciai, I. Zetti and R. Fanti (2022). Relative seismic and tsunami risk assessment for Stromboli Island (Italy), Int. J. Disaster Risk Reduct., 76, 103002.Wessel, B., M. Huber, C. Wohlfart, U. Marschalk, D. Kosmann and A. Roth (2018). Accuracy assessment of the global TanDEM-X Digital Elevation Model with GPS data, ISPRS J. Photogram. and Remote Sens., 139, 171-182.Wondzell, S.M. and J.G. King (2003). Postfire erosional processes in the Pacific Northwest and Rocky Mountain regions, Forest Ecol. Manag., 178(1-2), 75-87.Yokoyama, R., M. Shirasawa and R.J. Pike (2002). Visualizing topography by openness: A new application of image processing to digital elevation models, Photogram. Engin. Remote Sens., 68, 3, 257-266.Zakšek, K., K. Oštir and Ž. Kokalj (2011). Sky-view factor as a relief visualization technique, Remote Sens., 3, 2, 398-415; https://www.annalsofgeophysics.eu/index.php/annals/article/view/8982

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    Conference

    المساهمون: Lanzo, Giuseppe, Farina, Ilaria, Sbarigia, Matteo, Costantini, Edoardo

    Relation: ispartofbook:International Symposium on Dams and Earthquakes. 7th Meeting of the EWG, Athens, 2024; International Symposium on Dams and Earthquakes. 7th Meeting of the EWG, Athens, 2024; https://hdl.handle.net/11573/1714898