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    المساهمون: Department of Mathematics/CEN, Universität Hamburg, Hamburg, Norwegian Geotechnical Institute (NGI), University of Naples Federico II = Università degli studi di Napoli Federico II, Istituto Nazionale di Geofisica e Vulcanologia - Sezione di Roma (INGV), Istituto Nazionale di Geofisica e Vulcanologia, ERN Internacional, Mexico City, Centre Internacional de Mètodes Numèrics en Enginyeria (CIMNE), University of Bergen (UiB), Laboratoire des Sciences de l'Ingénieur Appliquées à la Mécanique et au génie Electrique (SIAME), Université de Pau et des Pays de l'Adour (UPPA), Universidad de Cantabria Santander = University of Cantabria Spain = Université de Cantabrie Espagne (UC / UniCan), Deutsches GeoForschungsZentrum GFZ, Department Geodesy and Remote Sensing, University College of London London (UCL), Istituto Nazionale di Geofisica e Vulcanologia - Sezione di Bologna (INGV), GEM Foundation, Pavia, Institut Français de Recherche pour l'Exploitation de la Mer (IFREMER), Laboratoire Magmas et Volcans (LMV), Institut de Recherche pour le Développement (IRD)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Université Clermont Auvergne (UCA)-Observatoire de Physique du Globe de Clermont-Ferrand (OPGC), Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Université Clermont Auvergne (UCA)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Université Clermont Auvergne (UCA), German Development Institute/Deutsches Institut für Entwicklungspolitik (DIE), Bonn, Indonesian Institute of Sciences (LIPI), University of Bristol Bristol, Alma Mater Studiorum Università di Bologna = University of Bologna (UNIBO), University of Hradec Králové, Università degli Studi Roma Tre = Roma Tre University (ROMA TRE), Cyprus University of Technology, Geoscience Australia, Canberra, ACT, University College Dublin Dublin (UCD), Universidad de Málaga Málaga = University of Málaga Málaga, Finnish Geospatial Research Institute (FGI), Masala, Helsingin yliopisto = Helsingfors universitet = University of Helsinki, Ural Federal University Ekaterinburg (UrFU), Department of Engineering Sciences, Middle East Technical University, Ankara, International Society for the Prevention and Mitigation of Natural Hazards, Athens, California State Polytechnic University Pomona (CAL POLY POMONA), Geological Survey of Israel (GSI), Geological Survey of Israel, University of Zagreb, British Geological Survey (BGS), AECOM, National and Kapodistrian University of Athens (NKUA), Department of Earth and Environmental Sciences, Ludwig-Maximilians-Universität, München, C.N.R. - Institute for Applied Mathematics and Information Technologies, Milano, University College Cork (UCC)

    المصدر: ISSN: 2296-6463 ; Frontiers in Earth Science ; https://uca.hal.science/hal-03227520 ; Frontiers in Earth Science, 2021, 9, ⟨10.3389/feart.2021.628772⟩.

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    المصدر: Lecture Notes in Civil Engineering ; Building for the Future: Durable, Sustainable, Resilient ; page 1366-1373 ; ISSN 2366-2557 2366-2565 ; ISBN 9783031325182 9783031325199

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    Report

    المساهمون: Ministero dello Sviluppo Economico, Dipartimento della Protezione Civile, CNR, Università di Bologna, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia, #PLACEHOLDER_PARENT_METADATA_VALUE#, Università di Pavia, EUCENTRE, Rete dei Laboratori Universitari di Ingegneria Sismica

    وصف الملف: application/pdf

    Relation: Akkar S., Bommer J.J., 2010. Empirical equations for the prediction of PGA, PGV, and spectral accelerations in Europe, the Mediterranean Region, and the Middle East. Seismological Research Letters, 81(2), 195–206. American Lifelines Alliance, 2001. Seismic Fragility Formulation for Water System, part 2 – Guideline, ASCE – FEMA. Antoncecchi I., Di Bucci D., Dolce M., Terlizzese F., 2019. Steps forward and open issues on the reduction of the risks related to hydrocarbon production and gas storage: the Italian experience from the viewpoint of two Governmental Administrations. Acta Geophysica, 67 (1), 411–421. Argnani A., 1987. The Gela Nappe: Evidence of accretionary melange in the Maghrebian foredeep of Sicily, Memorie della Società Geologica ltaliana, 38, 419–428. Argnani A., Frugoni F., 1997. Foreland Deformation in the Central Adriatic and its Bearing on the Evolution of the Northern Apennines. Annali di Geofisica, 40, 771–780. Argnani A., Torelli L., 2001. The Pelagian Shelf and its graben system (Italy/Tunisia). Mémoires du Muséum d'histoire naturelle, 186, 529–544. ASCE 7-16, 2017: Minimum design loads for buildings and other structures, 16th American Society of Civil Engineering ASCE, Reston, USA, pp.25–50. Azzaro R., Barbano M. S.,2000. Contributo alia compilazione della carta delle faglie attive della Sicilia, in Le ricerche del GNDT nel campo della pericolosità sismica, edited by F. Galadini, C. Meletti and A. Rebez, CNR—Gruppo Nazionale per la Difesa dai Terremoti, 227–235, Roma. Basili R., Brizuela B., Herrero A., Iqbal S., Lorito S., Maesano F.E., Murphy S., Perfetti P., Romano F., Scala A., Selva J., Taroni M., Thio H.K., Tiberti M.M., Tonini R., Volpe M., Glimsdal S., Harbitz C.B., Løvholt F., Baptista M.A., Carrilho F., Matias L.M., Omira R., Babeyko A., Hoechner A., Gurbuz M., Pekcan O., Yalçıner A., Canals M., Lastras G., Agalos A., Papadopoulos G., Triantafyllou I., Benchekroun S., Agrebi Jaouadi H., Attafi K., Ben Abdallah S., Bouallegue A., Hamdi H., Oueslati F., 2018. NEAM Tsunami Hazard Model 2018 (NEAMTHM18): online data of the Probabilistic Tsunami Hazard Model for the NEAM Region from the TSUMAPS-NEAM project. Istituto Nazionale di Geofisica e Vulcanologia (INGV); http://doi.org/10.13127/tsunami/neamthm18. Bindi D., Pacor F., Luzi L., Puglia R., Massa M., Ameri G., Paolucci R., 2011. Ground motion prediction equations derived from the Italian strong motion database. Bulletin of Earthquake Engineering, 9, 1899–1920. Boore D.M., Atkinson G.M.,2008. Ground motion prediction equations for the average horizontal component of PGA, PGV, and 5%-damped PSA at spectral periods between 0.01 and 10.0 s. Earthquake Spectra, 24, 99–138. Borzi B., Pinho R., Crowley H., 2008a. Simplified pushover-based vulnerability analysis for large scale assessment of RC buildings. Engineering Structures, 30(3), 804–820. Borzi B., Crowley H., Pinho R., 2008b. Simplified Pushover-Based Earthquake Loss Assessment (SPBELA) Method for Masonry Buildings., International Journal of Architectural Heritage, 2(4), 353–376. Calabrese A., Lai C.G., 2013. Fragility functions of blockwork wharves using artificial neural networks. Soil Dynamics and Earthquake Engineering, 52(1), 88–102. Calabrese A., Lai C.G., 2016. Sensitivity analysis of the seismic response of gravity quay walls to perturbations of input parameters. Soil Dynamics and Earthquake Engineering, 82, 55–62. Catalano S., De Guidi G., Romagnoli G., Torrisi S., Tortorici G., Tortorici L., 2008. The migration of plate boundaries in SE Sicily: Influence on the large‐scale kinematic model of the African promontory in southern Italy. Tectonophysics, 449, 41–62. Di Bucci D., Antoncecchi I., Ciccone F., Teofilo G., Terlizzese F., Argnani A., Ligi M., Rovere M., Basili R., Coltelli M., Lorito S., Borzi B., Germagnoli F., Di Ludovico M., Lignola G.P., Prota A., 2017). The SPOT project (potentially triggerable offshore seismicity and tsunamis): a first appraisal of the possible impact of oil and gas platforms on the seismic and tsunami risks along the Italian coasts. Geoingegneria Ambientale e Mineraria (GEAM), 152 (3), 125–131. Diviacco P., Firetto Carlino M., Busato A., 2019. Enhancing the value of public vintage seismic data in the Italian offshore.Geoscience Data Journal,6, 6–15. EMODnet Bathymetry Consortium (2018). EMODnet Digital Bathymetry (DTM). http://doi.org/10.12770/18ff0d48-b203-4a65-94a9-5fd8b0ec35f6 Fantoni R., Franciosi R., 2010. Mesozoic extension and Cenozoic compression in Po Plain and Adriatic foreland. In: Sassi, F.P. (Ed.), Nature and Geodynamics of the Lithostere in Northern Adriatic. Rendiconti Lincei. Scienze Fisiche e Naturali, 21 (1), 181–196. FEMA P-646, 2012. Guidelines for Design of Structures for Vertical Evacuation from Tsunamis. Federal Emergency Management Agency FEMA. Fukuyama H., Kato H., Ishihara T., Tajiri S., Tani M.,Okuda Y., Kabeyasawa T., Nakano Y., 2011: Structural design requirement on the tsunami evacuation buildings. SDRTEB, Japanese Ministry of Land, Infrastructure, Transportation and Tourism MLIT. Gauchery T., Rovere M., Cattaneo A., Asioli A., Tesi T., Pellegrini C., Campiani E., Trincardi F., 2019. Contourite deposits and landslides in the south-eastern Gela Basin (Strait of Sicily, Central Mediterranean Sea), relationships and contributory causes. Geophysical Research Abstracts, 21, EGU2019-16208. Ghielmi M., Minervini M., Nini C., Rogledi S., Rossi M., 2013. Late Miocene-Middle Pleistocene sequences in the Po Plain and Northern Adriatic Sea (Italy): The stratigraphic record of modification phases affecting a complex foreland basin. Marine and Petroleum GeolOgy, 42, 50–81. Ghisetti F.C., Gorman A.R., Grasso M., Vezzani L., 2009. Imprint of foreland structure on the deformation of a thrust sheet: The Plio-Pleistocene Gela nappe (southern Sicily, Italy). Tectonics, 28, 1–16. Grasso M., Pedley H. M., Maniscalco R., Ruggieri R., 2000. Geological context and explanatory notes of the ‘Carta Geologica del settore centro-meridionale dell'Altopiano Ibleo’. Memorie della Società Geologica Italiana, 55, 45–52. Grünthal G., 1998. European Macroseismic Scale (EMS 1998). Council of Europe, Cahiers du Centre Européen de Géodynamique et de Sismologie 15. Guidoboni E., Ferrari G., Mariotti D., Comastri A., Tarabusi G., Sgattoni G., Valensise G., 2018. CFTI5Med, Catalogo dei Forti Terremoti in Italia (461 a.C.-1997) e nell’area Mediterranea (760 a.C.-1500). Istituto Nazionale di Geofisica e Vulcanologia (INGV). http://storing.ingv.it/cfti/cfti5/. HAZUS, 2004. Multi-hazard Loss Estimation Methodology –Earthquake Model, Technical Manual, National Institute of Buildings Science (NIBS) for the Federal Emergency Management Agency (FEMA), Washington D.C., USA. Kagan Y.Y., 2002. Seismic moment distribution revisited. I. Statistical results, Geophysical Journal International, 148, 520–541. Kriebel D. L., Lynett P. J., Cox D. T., Petroff C. M., Robertson I. N. and Chock G. Y. K., 2017. Energy method for approximating energy overland tsunami flows. Journal of Waterway, Port, Coastal, and Ocean Engineering, 143(5), 04017014. Kuhlmann J., Asioli A., Trincardi F., Klügel A., Huhn K., 2017. Landslide frequency and failure mechanisms at NE Gela Basin (Strait of Sicily). Journal of Geophysical Research: Earth Surface, 122, 2223–2243. Leonard M.,2014. Self-Consistent Earthquake Fault-Scaling Relations: Update and Extension to Stable Continental Strike-Slip Faults. Bulletin of the Seismological Society of America, 104(6), 2953–2965. Margottini C., Molin D.,Serva L.,1992. Intensity versus ground motion: A new approach using Italian data. Engineering Geology, 33, 1, 45–58. Meletti C., Montaldo V., 2007. Stime di pericolosità sismica per diverse probabilità di superamento in 50 anni: valori di ag. Progetto DPC-INGV S1, Deliverable D2, http://esse1.mi.ingv.it/d2.html. Mesinger F., Arakawa A., 1976. Numerical Methods Used in Atmospheric Models, Volume 1. International Council of Scientific Unions—World Meteorological Organization, Geneva. Minisini D., Trincardi F., Asioli A., Canu M., Foglini F., 2007. Morphological variability of exposed mass-tansport deposits on the eastern slope of Gela Basin (Sicily channel). Basin research, 19(2), 217–240. Minisini D., Trincardi F., 2009. Frequent failure of the continental slope: The Gela Basin (Sicily Channel). Journal of Geophysical Research: Earth Surface,, F03014,. Morris A., Ferril D.A., Henderson D.B., 1996. Slip-tendency analysis and fault reactivation. Geology, 24, 275–278. Neves M.C., Paiva L.T., Luis J., 2009. Software for slip-tendency analysis in 3D: A plug-in for Coulomb. Computers and Geosciences, 35, 2345–2352. Pace P., 2018. In Atlas of Structural Geological Interpretation from Seismic Images, 55–59. Paparo M.A., Tinti S., 2017. Analysis of Seismic-Driven Instability of Mt. Nuovo in the Ischia Island, Italy. Bulletin of the Seismological Society of America, 107(2), 750–759. Paparo M.A., Armigliato A., Pagnoni G., Zaniboni F., Tinti S., 2017. Earthquake-triggered landslides along the Hyblean-Malta Escarpment (off Augusta, eastern Sicily, Italy) – assessment of the related tsunamigenic potential. Advances in Geosciences, 44, 1–8. Rovida A., Locati M., Camassi R., Lolli B., Gasperini P., 2016. CPTI15, the 2015 version of the Parametric Catalogue of Italian Earthquakes. Istituto Nazionale di Geofisica e Vulcanologia, doi: http://doi.org/10.6092/INGV.IT-CPTI15. Sabetta F., Speranza E., Borzi B., Faravelli M., 2013. Scenari di danno empirici e analitici a confronto con recenti terremoti italiani. Proceedings of 32th National Conference of GNGTS, Trieste, Italy. SRM-LIFE, 2007. Development of a global methodology for the vulnerability assessment and risk management of lifelines, infrastructures and critical facilities. Application to the metropolitan area of Thessaloniki, Research project, G. Secretariat for Research and Techniques, Greece. Suppasri A., Mas E., Charvet I., Gunasekera R., Imai K., Fukutani Y., Abe Y., Imamura F., 2013. Building damage characteristics based on surveyed data and fragility curves of the 2011 Great East Japan tsunami. Natural Hazards, 66(2), 319–341. Tinti S., Manucci A., 2006. Gravitational stability computed through the limit equilibrium method revisited. Geophysical Journal International, 164, 1-14. Tinti S., Tonini R., 2013. The UBO-TSUFD tsunami inundation model: validation and application to a tsunami case study focused on the city of Catania, Italy, Natural Hazards and Earth Systems Science, 13, 1795–1816. Whitman R.V., Reed J.W., Hong S.T., 1973. Earthquake Damage Probability Matrices, in Proceedings of the 5th World Conference on Earthquake Engineering, Vol. 2, Palazzo DEI CONGRESSI (EUR), Rome, 2531–2540.; http://hdl.handle.net/2122/13625; http://doi.org/10.5281/zenodo.3732887

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    المساهمون: DEL ZOPPO, Marta, DI LUDOVICO, Marco, Prota, Andrea

    Relation: ispartofbook:2nd Workshop on Capacity Assessment of Corroded Reinforced Concrete Structures, CACRCS DAYS 2020; https://hdl.handle.net/11588/908191

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    المصدر: Lecture Notes in Civil Engineering ; 10th International Conference on FRP Composites in Civil Engineering ; page 1395-1403 ; ISSN 2366-2557 2366-2565 ; ISBN 9783030881658 9783030881665

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    المصدر: Lecture Notes in Civil Engineering ; 10th International Conference on FRP Composites in Civil Engineering ; page 1862-1873 ; ISSN 2366-2557 2366-2565 ; ISBN 9783030881658 9783030881665

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    المصدر: Lecture Notes in Civil Engineering ; Civil Structural Health Monitoring ; page 177-195 ; ISSN 2366-2557 2366-2565 ; ISBN 9783030742577 9783030742584

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    المساهمون: F. Braga, A. Dall’Asta, F. Gara, DEL ZOPPO, Marta, Maddaloni, Gennaro, DI LUDOVICO, Marco, Balsamo, Alberto, Prota, Andrea

    مصطلحات موضوعية: FRCM, shear strengthening, existing masonry, irregular texture

    Relation: info:eu-repo/semantics/altIdentifier/isbn/978-88-3339-256-1; ispartofbook:Atti XVIII Convegno ANIDIS; L'Ingegneria Sismica in Italia; firstpage:2653; lastpage:2659; numberofpages:7; alleditors:F. Braga, A. Dall’Asta, F. Gara; http://hdl.handle.net/11588/759875

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    Conference

    المساهمون: DEL ZOPPO, Marta, Rossetto, T., Di Ludovico, M., Prota, A.

    Relation: ispartofbook:Proceedings of 1st fib Italy YMG Symposium; 1st fib Italy YMG Symposium on Concrete and Concrete Structures; http://hdl.handle.net/11588/783245; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85097046109

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    Relation: Del Zoppo, Marta, Wijesundara, Kushan, Rosetto, Tiziana, Dias, Priyanthi, Baiguera, Marco, Di Ludovico, Marco, Thamboo, Julian and Prota, Andrea (2021) Influence of exterior infill walls on the performance of RC frames under tsunami loads: Case study of school buildings in Sri Lanka. Engineering Structures, 234, [111920]. (doi:10.1016/j.engstruct.2021.111920 ).