GNGTS 2022 - Atti del 40° Convegno Nazionale

GNGTS 2022 Sessione 2.2 333 References Borzi B, Onida M, Faravelli M, Polli D, Pagano M, Quaroni D, Cantoni A, Speranza E, Moroni C (2021) IRMA platform for the calculation of damages and risks of Italian residential buildings. Bull Earthq Eng, 19: 3033-3055. Dolce M, Speranza E, Giordano F, Borzi B, Bocchi F, Conte C, Di Meo A, Faravelli M, Pascale V (2019) Observed damage database of past Italian earthquakes: the DaDO WebGIS. Boll Geofs Teor Appl, 60(2): 141-164. DolceM, Prota A, Borzi B, da Porto F, Lagomarsino S, Magenes G, Moroni C, Penna A, PoleseM, Speranza E, Verderame GM, Zuccaro G (2021) Seismic risk assessment of residential buildings in Italy . Bull Earthq Eng, 19: 2999-3032. Evangelista L, Del Gaudio S, Smerzini C, D’Onofrio A, Festa G, Iervolino I, Landolfi L, Paolucci R, Santo A, Silvestri F (2017) Physics-based seismic input for engineering applications: a case study in the Aterno River valley, Central Italy , Bull Earthq Eng, 15(7): 2645–2671. Lee RL, Bradley BA, Stafford PJ, Graves RW, Rodriguez-Marek A (2020) Hybrid broadband ground motion simulation validation of small magnitude earthquakes in Canterbury, New Zealand. Earthquake Spectra 36(2): 673-699. Mazzieri I, Stupazzini M, GuidottiR, Smerzini C (2013) SPEED: SPectral Elements in Elastodynamics with Discontinuous Galerkin: a non-conforming approach for 3D multi-scale problems , Int J Numer Meth Eng 95, no. 12, 991–1010. Michelini A, Faenza L, Lanzano G, Lauciani V, Jozinovic D, Puglia R, Luzi L (2020) The New ShakeMap in Italy: Progress and Advances in the Last 10 Yr. Seismol Research Letters, 91(1): 317-333. Paolucci R, Gatti F, Infantino M, Smerzini C, Ozcebe AG, Stupazzini M (2018) Broadband Ground Motions from 3D Physics-Based Numerical Simulations Using Artificial Neural Networks, Bull. Seism. Soc. Am., 108(3A): 1272– 1286. Paolucci R, Smerzini C, Vanini M (2021) BB-SPEEDset: A Validated Dataset of Broadband Near-Source Earthquake Ground Motions from 3D Physics-Based Numerical Simulations , Bull. Seism. Soc. Am., 111(5): 2527-2545. Petrone F, Abrahamson N, McCallen D, Miah M (2021) Validation of (not-historical) large-event near-fault ground- motion simulations for use in civil engineering applications, Earthquake Engng Struct Dyn. 50:116–134. Riaño AC, Reyes JC, Yamín LE, Bielak J, Taborda R, Restrepo D (2021) Integration of 3D large-scale earthquake simulations into the assessment of the seismic risk of Bogota, Colombia , Earthquake Engng Struct Dyn.; 50(1): 155– 176, https://doi.org/10.1002/eqe.3373. Rosti A., Rota M, Penna A (2018) Damage classification and derivation of damage probability matrices from L’Aquila (2009) post-earthquake survey data . Bull Earthquake Eng, 16: 3687–3720 https://doi.org/10.1007/s10518-018- 0352-6. Rosti A, Rota M, Penna A (2020) Influence of seismic input characterisation on empirical damage probability matrices for the 2009 L’Aquila event. Soil Dyn Earthq Eng, 128, https://doi.org/10.1016/j.soildyn.2019.105870. Rosti A, Rota M, Penna A (2021a) Empirical fragility curves for Italian URM buildings. Bull Earthq Eng, 19: 3057-3076. Rosti A, Del Gaudio C, Rota M, Ricci P, Di Ludovico M, Penna A, Verderame GM (2021b) Empirical fragility curves for Italian residential RC buildings . Bull Earthq Eng, 19: 3165-3183. Smerzini C, Pitilakis K. (2018) Seismic risk assessment at urban scale from 3D physics-based numerical modeling: the case of Thessaloniki, Bull. Earthq Eng, 16(7): 2609-2631. Stupazzini M, Infantino M, Allmann A, Paolucci R (2021) Physics-based probabilistic seismic hazard and loss assessment in large urban areas: a simplified application to Istanbul. Earthquake Engng Struct Dyn. 50: 99-115. Taborda R, Bielak J (2013) Ground‐Motion Simulation and Validation of the 2008 Chino Hills, California, Earthquake. Bulletin of the Seismological Society of America; 103 (1): 131–156. Wald DJ, Worden CB, Thompson EM, Hearne M. (2021) ShakeMap operations, policies, and procedures. Earthquake Spectra, doi:10.1177/87552930211030298.

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