Search Results - "Lorito, S"

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  1. 1

    Probabilistic tsunami forecasting for early warning by Selva, J., Lorito, S., Volpe, M., Romano, F., Tonini, R., Perfetti, P., Bernardi, F., Taroni, M., Scala, A., Babeyko, A., Løvholt, F., Gibbons, S. J., Macías, J., Castro, M. J., González-Vida, J. M., Sánchez-Linares, C., Bayraktar, H. B., Basili, R., Maesano, F. E., Tiberti, M. M., Mele, F., Piatanesi, A., Amato, A.

    Published in Nature communications (28-09-2021)
    “…Tsunami warning centres face the challenging task of rapidly forecasting tsunami threat immediately after an earthquake, when there is high uncertainty due to…”
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  2. 2

    Probabilistic hazard for seismically induced tsunamis: accuracy and feasibility of inundation maps by Lorito, S., Selva, J., Basili, R., Romano, F., Tiberti, M.M., Piatanesi, A.

    Published in Geophysical journal international (01-01-2015)
    “…Probabilistic tsunami hazard analysis (PTHA) relies on computationally demanding numerical simulations of tsunami generation, propagation, and non-linear…”
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  3. 3

    Limited overlap between the seismic gap and coseismic slip of the great 2010 Chile earthquake by Lorito, S, Cocco, M, Avallone, A, Boschi, E, Tong, X, Piatanesi, A, Romano, F, Atzori, S, McCloskey, J

    Published in Nature geoscience (01-03-2011)
    “…The Mw 8.8 mega-thrust earthquake and tsunami that occurred on 27 February 2010 offshore the Maule region, Chile, was not unexpected. A clearly identified…”
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  4. 4

    A New Approximate Method for Quantifying Tsunami Maximum Inundation Height Probability by Glimsdal, S., Løvholt, F., Harbitz, C. B., Romano, F., Lorito, S., Orefice, S., Brizuela, B., Selva, J., Hoechner, A., Volpe, M., Babeyko, A., Tonini, R., Wronna, M., Omira, R.

    Published in Pure and applied geophysics (01-07-2019)
    “…Regional and global tsunami hazard analysis requires simplified and efficient methods for estimating the tsunami inundation height and its related uncertainty…”
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  5. 5

    Structural control on the Tohoku earthquake rupture process investigated by 3D FEM, tsunami and geodetic data by Romano, F., Trasatti, E., Lorito, S., Piromallo, C., Piatanesi, A., Ito, Y., Zhao, D., Hirata, K., Lanucara, P., Cocco, M.

    Published in Scientific reports (09-07-2014)
    “…The 2011 Tohoku earthquake (M w = 9.1) highlighted previously unobserved features for megathrust events, such as the large slip in a relatively limited area…”
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  7. 7

    Quantification of source uncertainties in Seismic Probabilistic Tsunami Hazard Analysis (SPTHA) by Selva, J., Tonini, R., Molinari, I., Tiberti, M.M., Romano, F., Grezio, A., Melini, D., Piatanesi, A., Basili, R., Lorito, S.

    Published in Geophysical journal international (01-06-2016)
    “…We propose a procedure for uncertainty quantification in Probabilistic Tsunami Hazard Analysis (PTHA), with a special emphasis on the uncertainty related to…”
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  8. 8

    Optimal time alignment of tide‐gauge tsunami waveforms in nonlinear inversions: Application to the 2015 Illapel (Chile) earthquake by Romano, F., Piatanesi, A., Lorito, S., Tolomei, C., Atzori, S., Murphy, S.

    Published in Geophysical research letters (16-11-2016)
    “…Tsunami waveform inversion is often used to retrieve information about the causative seismic tsunami source. Tide gauges record tsunamis routinely; however,…”
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  9. 9

    Clues from joint inversion of tsunami and geodetic data of the 2011 Tohoku-oki earthquake by Romano, F., Piatanesi, A., Lorito, S., D'Agostino, N., Hirata, K., Atzori, S., Yamazaki, Y., Cocco, M.

    Published in Scientific reports (27-04-2012)
    “…The 2011 Tohoku-oki (Mw 9.1) earthquake is so far the best-observed megathrust rupture, which allowed the collection of unprecedented offshore data. The joint…”
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  10. 10

    The 2018 Mw 6.8 Zakynthos (Ionian Sea, Greece) earthquake: seismic source and local tsunami characterization by Cirella, A, Romano, F, Avallone, A, Piatanesi, A, Briole, P, Ganas, A, Theodoulidis, N, Chousianitis, K, Volpe, M, Bozionellos, G, Selvaggi, G, Lorito, S

    Published in Geophysical journal international (01-05-2020)
    “…SUMMARY We investigated the kinematic rupture model of the 2018 Mw 6.8 Zakynthos, Ionian Sea (Greece), earthquake by using a non-linear joint inversion of…”
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  11. 11

    Shallow slip amplification and enhanced tsunami hazard unravelled by dynamic simulations of mega-thrust earthquakes by Murphy, S., Scala, A., Herrero, A., Lorito, S., Festa, G., Trasatti, E., Tonini, R., Romano, F., Molinari, I., Nielsen, S.

    Published in Scientific reports (11-10-2016)
    “…The 2011 Tohoku earthquake produced an unexpected large amount of shallow slip greatly contributing to the ensuing tsunami. How frequent are such events? How…”
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  12. 12

    Appraising the Early-est earthquake monitoring system for tsunami alerting at the Italian Candidate Tsunami Service Provider by Bernardi, F, Lomax, A, Michelini, A, Lauciani, V, Piatanesi, A, Lorito, S

    Published in Natural hazards and earth system sciences (11-09-2015)
    “…In this paper we present and discuss the performance of the procedure for earthquake location and characterization implemented in the Italian Candidate Tsunami…”
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  13. 13

    Integrating geologic fault data into tsunami hazard studies by Basili, R, Tiberti, M M, Kastelic, V, Romano, F, Piatanesi, A, Selva, J, Lorito, S

    Published in Natural hazards and earth system sciences (19-04-2013)
    “…We present the realization of a fault-source data set designed to become the starting point in regional-scale tsunami hazard studies. Our approach focuses on…”
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  14. 14

    Slip distribution of the 2003 Tokachi-oki Mw 8.1 earthquake from joint inversion of tsunami waveforms and geodetic data by Romano, F., Piatanesi, A., Lorito, S., Hirata, K.

    “…We study the 2003 Mw 8.1 Tokachi‐oki earthquake, a great interplate event that occurred along the southwestern Kuril Trench and generated a significant…”
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  15. 15

    Source of the 6 February 2013 Mw = 8.0 Santa Cruz Islands Tsunami by Romano, F, Molinari, I, Lorito, S, Piatanesi, A

    Published in Natural hazards and earth system sciences (01-06-2015)
    “…On 6 February 2013 an Mw = 8.0 subduction earthquake occurred close to Santa Cruz Islands at the transition between the Solomon and the New Hebrides Trench…”
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  16. 16

    Source of the 6 February 2013 M w = 8.0 Santa Cruz Islands Tsunami by Romano, F., Molinari, I., Lorito, S., Piatanesi, A.

    Published in Natural hazards and earth system sciences (26-06-2015)
    “…On 6 February 2013 an Mw = 8.0 subduction earthquake occurred close to Santa Cruz Islands at the transition between the Solomon and the New Hebrides Trench…”
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  17. 17

    Assessing the Optimal Tsunami Inundation Modeling Strategy for Large Earthquakes in Subduction Zones by Scala, A., Lorito, S., Escalante Sánchez, C., Romano, F., Festa, G., Abbate, A., Bayraktar, H. B., Castro, M. J., Macías, J., Gonzalez‐Vida, J. M.

    Published in Journal of geophysical research. Oceans (01-09-2024)
    “…Tsunamis are rare events involving several complex physical phenomena. Due to this complexity and the relative scarcity of observations, tsunami research makes…”
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  18. 18

    Benchmarking the Optimal Time Alignment of Tsunami Waveforms in Nonlinear Joint Inversions for the Mw 8.8 2010 Maule (Chile) Earthquake by Romano, F., Lorito, S., Lay, T., Piatanesi, A., Volpe, M., Murphy, S., Tonini, R.

    Published in Frontiers in earth science (Lausanne) (22-12-2020)
    “…Finite-fault models for the 2010 M w 8.8 Maule, Chile earthquake indicate bilateral rupture with large-slip patches located north and south of the epicenter…”
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  19. 19

    Kinematics and source zone properties of the 2004 Sumatra-Andaman earthquake and tsunami: Nonlinear joint inversion of tide gauge, satellite altimetry, and GPS data by Lorito, S., Piatanesi, A., Cannelli, V., Romano, F., Melini, D.

    “…We (re)analyzed the source of the 26 December 2004 Sumatra‐Andaman earthquake and tsunami through a nonlinear joint inversion of an inhomogeneous data set made…”
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  20. 20

    Wave Interaction of Reverse‐Fault Rupture With Free Surface: Numerical Analysis of the Dynamic Effects and Fault Opening Induced by Symmetry Breaking by Scala, A., Festa, G., Vilotte, J.‐P., Lorito, S., Romano, F.

    “…Several great earthquakes occur on thrust faults along both subduction and continental collision zones. These events often feature a large shallow slip patch,…”
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