يعرض 1 - 20 نتائج من 347 نتيجة بحث عن '"Albarello, Dario"', وقت الاستعلام: 0.55s تنقيح النتائج
  1. 1
    Academic Journal

    المساهمون: Gaudiosi, Iolanda, Romagnoli, Gino, Albarello, Dario, Fortunato, Carolina, Imprescia, Paola, Stigliano, Francesco, Moscatelli, Massimiliano

    وصف الملف: ELETTRONICO

    Relation: info:eu-repo/semantics/altIdentifier/pmid/37709906; info:eu-repo/semantics/altIdentifier/wos/WOS:001095437900002; volume:10; issue:1; journal:SCIENTIFIC DATA; https://hdl.handle.net/11365/1254320; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85171338632; https://www.nature.com/articles/s41597-023-02412-8

  2. 2
    Academic Journal

    المساهمون: Nespoli, Massimo, Antonellini, Marco, Albarello, Dario, Lupi, Matteo, Cenni, Nicola, Piombo, Antonello

    وصف الملف: ELETTRONICO

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:001083957600001; volume:50; issue:20; journal:GEOPHYSICAL RESEARCH LETTERS; https://hdl.handle.net/11365/1254321; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85173575429

  3. 3
    Academic Journal

    المساهمون: Antonucci, Andrea, Rovida, Andrea, D'Amico, Vera, Albarello, Dario

    وصف الملف: STAMPA

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000988980700001; volume:23; issue:5; firstpage:1805; lastpage:1816; numberofpages:12; journal:NATURAL HAZARDS AND EARTH SYSTEM SCIENCES; https://hdl.handle.net/11365/1254275; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85160940339; https://nhess.copernicus.org/articles/23/1805/2023/

  4. 4
    Academic Journal

    المؤلفون: Albarello, Dario1,2 (AUTHOR), Paolucci, Enrico3 (AUTHOR) enrico.paolucci3@unibo.it

    المصدر: Bulletin of Earthquake Engineering. Dec2024, Vol. 22 Issue 15, p7299-7321. 23p.

  5. 5
    Academic Journal

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, Università degli Studi di Genova, Università degli Studi di Siena

    وصف الملف: application/pdf

    Relation: Bulletin of the Seismological Society of America; 3/113 (2023)

  6. 6
    Academic Journal
  7. 7
    Academic Journal

    المؤلفون: Albarello, Dario

    المصدر: DNA – Di Nulla Academia; Vol. 4 No. 1 (2023): La Festa Di Nulla Academia; 86-94 ; DNA – Di Nulla Academia; V. 4 N. 1 (2023): La Festa Di Nulla Academia; 86-94 ; 2724-5179 ; 10.6092/issn.2724-5179/v4-n1-2023

    وصف الملف: application/pdf

  8. 8
    Book
  9. 9
    Academic Journal

    المساهمون: Acunzo, Gianluca, Falcone, Gaetano, di Lernia, Annamaria, Mori, Federico, Mendicelli, Amerigo, Naso, Giuseppe, Albarello, Dario, Moscatelli, Massimiliano

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:001098065600001; volume:165; journal:COMPUTERS AND GEOTECHNICS; https://hdl.handle.net/11365/1264176; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85174853583

  10. 10
    Academic Journal

    المؤلفون: Albarello, Dario, Paolucci, Roberto

    المساهمون: Albarello, Dario, Paolucci, Roberto

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:001241088600001; volume:95; issue:2A; firstpage:557; lastpage:559; numberofpages:3; journal:SEISMOLOGICAL RESEARCH LETTERS; https://hdl.handle.net/11365/1264177; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85186253779

  11. 11
    Conference

    المساهمون: Nespoli, Massimo, Antonellini, Marco, Albarello, Dario, Lupi, Matteo, Cenni, Nicola, Rivalta, Eleonora, Piombo, Antonello

    مصطلحات موضوعية: Salse di Nirano, mud volcanoes, gravity data, inversion

    وصف الملف: ELETTRONICO

    Relation: ispartofbook:EGU General Assembly 2023; EGU General Assembly 2023; firstpage:1; lastpage:1; numberofpages:1; https://hdl.handle.net/11585/924072

  12. 12
    Academic Journal

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, #PLACEHOLDER_PARENT_METADATA_VALUE#

    وصف الملف: application/pdf

    Relation: Bulletin of the Seismological Society of America; 4/111 (2021); Barani, S., D. Albarello, D. Spallarossa, and M. Massa (2015). On the influence of horizontal ground-shaking definition on probabilistic seismic hazard analysis, Bull. Seismol. Soc. Am. 105, no. 5, 2704–2712. Barani, S., R. De Ferrari, and G. Ferretti (2013). Influence of soil modeling uncertainties on site response, Earthq. Spectra 29, no. 3, 705–732. Barani, S., D. Spallarossa, and P. Bazzurro (2009). Disaggregation of probabilistic ground-motion hazard in Italy, Bull. Seismol. Soc. Am. 99, no. 5, 2638–2661. Bazzurro, P., and C. A. Cornell (2004). Ground-motion amplification in nonlinear soil sites with uncertain properties, Bull. Seismol. Soc. Am. 94, no. 6, 2090–2109. Borcherdt, R. D. (1970). Effects of local geology on ground motion near San Francisco Bay, Bull. Seismol. Soc. Am. 60, 29–61. Bordoni, P., R. M. Azzara, F. Cara, R. Cogliano, G. Cultrera, G. Di Giulio, A. Fodarella, G. Milana, S. Pucillo, G. Riccio, et al. (2012). Preliminary results from EMERSITO, the rapid response network for site effect studies, Ann. Geophys. 55, no. 4, doi:10.4401/ag- 6153. Bordoni, P., F. Pacor, G. Cultrera, M. Massa, P. Casale, F. Cara, G. Di Giulio, D. Famiani, C. Ladina, M. Pischiutta, et al. (2017). Caratterizzazione sismica delle stazioni accelerometriche italiane nell’ambito della Convenzione DPC-INGV 2016-17, Allegato B2 Obiettivo 1 Task B, Atti del 36° Convegno Annuale del GNGTS, 228–230 (in Italian). Burrato, P., F. Ciucci, and G. Valensise (2003). An inventory of river anomalies in the Po Plain, Northern Italy: Evidence for active blind thrust faulting, Ann. Geophys. 46, no. 5, doi:10.4401/ag-3459. Davis, P. M., J. L. Rubinstein, K. H. Liu, S. S. Gao, and L. Knopoff (2000). Northridge earthquake damage caused by geologic focusing of seismic waves, Science 289, no. 5485, 1746–1750. Electric Power Research Institute (EPRI) (1993). Guidelines for determining design ground motions, EPRI TR-102293. Eurocode 8 (2004). Design of structures for earthquake resistance. P1: General rules, seismic actions and rules for buildings, Draft 6, Doc CEN/TC250/SC8/N335, European Committee for Standardization. Furumura, T., and B. L. N. Kennett (1998). On the nature of regional seismic phases—III. The influence of crustal heterogeneity on the wavefield for subduction earthquakes: The 1985 Michoacan and 1995 Copala, Guerrero, Mexico earthquakes, Geophys. J. Int. 135, no. 3, 1060–1084. GeoMol Team (2015). GeoMol—Assessing subsurface potentials of the Alpine Foreland Basins for sustainable planning and use of natural resources, Project Report, Augsburg, LfU, Germany, 188 pp. Grazier, V., A. Shakal, C. Scrivner, E. Hauksson, J. Polet, and L. Jones (2002). TriNet strong-motion data from the M 7.1 Hector Mine, California, earthquake of 16 October 1999, Bull. Seismol. Soc. Am. 92, 1525–1542. Idriss, I. M. (2011). Use of Vs30 to represent local site conditions, 4th LASPEI/IAEE International Symposium Effects of Surface Geology on Strong Ground Motions, Santa Barbara, California, 23–26 August 2011. Idriss, I. M., andJ. I. Sun (1993). User’sManual for Shake91: A Computer Program for Conducting Equivalent Linear Seismic Response Analyses of Horizontally Layered Soil Deposits, Center for Geotechnical Modelling, Department of Civil and Environmental Engineering, University of California, Davis, California. Kaklamanos, J., L. G. Baise, E. M. Thompson, and L. Dorfmann (2015). Comparison of 1D linear, equivalent-linear, and nonlinear site response models at six KiK-net validation sites, Soil Dynam. Earthq. Eng. 69, 207–219. Kaklamanos, J., B. A. Bradley, E. M. Thompson, and L. G. Baise (2013). Critical parameters affecting bias and variability in siteresponse analyses using KiK-net downhole array data, Bull. Seismol. Soc. Am. 103, no. 3, 1733–1749. Kim, B., Y. Hashash, J. P. Stewart, E. M. Rathje, J. A. Harmon, M. I. Musgrove, K. W. Campbell, and W. J. Silva (2016). Relative differences between nonlinear and equivalent-linear 1D site response analyses, Earthq. Spectra 32, 1845–1865. Klin, P., G. Laurenzano, M. A. Romano, E. Priolo, and L. Martelli (2019). ER3D: A structural and geophysical 3-D model of central Emilia-Romagna (northern Italy) for numerical simulation of earthquake ground motion, Solid Earth 10, no. 3, 931–949. Koketsu, K. M., and H. Miyake (2008). A seismological overview of long-period ground motion, J. Seismol. 12, 133–143. Konno, K., and T. Ohmachi (1998). Ground-motion characteristics estimated from spectral ratio between horizontal and vertical components of microtremors, Bull. Seismol. Soc. Am. 88, 228–241. Lanzano, G., M. D’Amico, C. Felicetta, R. Puglia, L. Luzi, F. Pacor, and D. Bindi (2016). Ground-motion prediction equations for regionspecific probabilistic seismic-hazard analysis, Bull. Seismol. Soc. Am. 106, no. 1, 73–92. Laurenzano, G., E. Priolo, M. Mucciarelli, L. Martelli, and M. Romanelli (2017). Site response estimation at Mirandola by virtual reference station, Bull. Earthq. Eng. 15, no. 6, 2393–2409. Luzi, L., F. Pacor, G. Ameri, R. Puglia, P. Burrato, M. Massa, P. Augliera, G. Franceschina, S. Lovati, and R. Castro (2013). Overview on the strong motion data recorded during the May– June 2012 Emilia seismic sequence, Seismol. Res. Lett. 84, no. 4, 629–644. Martelli, L., and M. Romani (2013). Microzonazione Sismica e analisi della condizione limite per l’emergenza delle aree epicentrali dei terremoti della pianura emiliana di maggio-giugno 2012, relazione illustrativa, Servizio geologico, sismico e dei suoli Regione Emilia Romagna (in Italian). Martelli, L., M. Bonini, L. Calabrese, G. Corti, G. Ercolessi, F. C. Molinari, L. Piccardi, S. Pondrelli, F. Sani, and P. Severi (2017). Carta sismotettonica della Regione Emilia-Romagna e aree limitrofe, scala 1:250.000 (edizione 2016), Con note illustrative, Regione Emilia-Romagna, SGSS; CNR, IGG sez. FI; Università degli Studi di Firenze, DST; INGV sez. BO. D.R.E.AM., Italy (in Italian). Mascandola, C., S. Barani, M. Massa, E. Paolucci, and D. Albarello (2020). Clustering analysis of probabilistic seismic hazard for the selection of ground motion time histories in vast areas, Bull. Earthq. Eng. 18, 2985–3004. Mascandola, C., M. Massa, S. Barani, D. Albarello, S. Lovati, L. Martelli, and V. Poggi (2019). Mapping the seismic bedrock of the Po Plain (Italy) through ambient-vibration monitoring, Bull. Seismol. Soc. Am. 109, no. 1, 164–177. Mascandola, C., M. Massa, S. Barani, S. Lovati, and M. Santulin (2017). Long-period amplification in deep alluvial basins and consequences for site-specific probabilistic seismic-hazard analysis: An example from the Po Plain (Northern Italy), Bull. Seismol. Soc. Am. 107, no. 2, 770–786. Massa, M., and P. Augliera (2013). Teleseisms as estimator of experimental long period site amplifications: Example in the Po Plain (Italy) from the 2011 Mw 9.0 Tohoku-Oki (Japan) earthquake, Bull. Seismol. Soc. Am. 103, no. 5, 2541–2556. Mayne, P. W. (2001). Stress-strain-strength-flow parameters from seismic cone tests, Proc. International Conf. on In-Situ Measurement of Soil Properties & Case Histories, Bali, Indonesia, 27–48. Milana, G., P. Bordoni, F. Cara, G. Di Giulio, S. Hailemikael, and A. Rovelli (2013). One-dimensional velocity structure of the Po River plain (northern Italy) assessed by combining strong motion and ambient noise data, Bull. Earthq. Eng. 12, no. 5, 2195–2209. Ministero delle Infrastrutture e dei Trasporti (2018). Part 3.2.2: Categorie di sottosuolo e condizioni topografiche, in Norme Tecniche delle Costruzioni, Gazzetta Ufficiale, n. 42 del 20 febbraio 2018 (in Italian). Miyazaki, S. I., P. Segall, J. Fukuda, and T. Kato (2004). Space time distribution of afterslip following the 2003 Tokachi-oki earthquake: Implications for variations in fault zone frictional properties, Geophys. Res. Lett. 31, no. 6, doi:10.1029/ 2003GL019410. Molinari, I., A. Argnani, A. Morelli, and P. Basini (2015). Development and testing of a 3-D seismic velocity model of the Po Plain sedimentary basin, Italy, Bull. Seismol. Soc. Am. 105, no. 2A, 753–764. Muttoni, G., C. Carcano, E. Garzanti, M. Ghielmi, A. Piccin, R. Pini, S. Rogledi, and D. Sciunnach (2003). Onset of major Pleistocene glaciations in the Alps, Geology 31, no. 11, 989–992. Paolucci, E., D. Albarello, S. D’Amico, E. Lunedei, L. Martelli, M. Mucciarelli, and D. Pileggi (2015). A large scale ambient vibration survey in the area damaged by May–June 2012 seismic sequence in Emilia Romagna, Italy, Bull. Earthq. Eng. 13, no. 11, 3187–3206. Paolucci, R., I. Mazzieri, and C. Smerzini (2015). Anatomy of strong ground motion: Near source records and three-dimensional physics- based numerical simulations of the Mw 6.0 2012 May 29 Po Plain earthquake, Italy, Geophys. J. Int. 203, 2001–2020. Parolai, S. (2012). Investigation of site response in urban areas by using earthquake data and seismic noise, in New Manual of Seismological Observatory Practice, Vol. 2, 1–38. Priolo, E., M. Romanelli, C. Barnaba, M. Mucciarelli, G. Laurenzano, L. Dall’Olio, N. A. Zeid, R. Caputo, G. Santarato, L. Vignola, et al. (2012). The Ferrara thrust earthquakes of May–June 2012: Preliminary site response analysis at the sites of the OGS temporary network, Ann. Geophys. 55, no. 4, 591–597, doi:10.4401/ag-6172. Ratchkovski, N. A., R. A. Hansen, J. C. Stachnik, T. Cox, O. Fox, L. Rao, E. Clark, M. Lafevers, S. Estes, J. B. MacCormack, et al. (2003). Aftershock sequence of the Mw 7.9 Denali fault, Alaska, earthquake of 3 November 2002 from regional seismic network data, Seismol. Res. Lett. 74, no. 6, 743–752. Regione Emilia-Romagna, ENI – AGIP (1998). Riserve idriche sotterranee della Regione Emilia-Romagna, a cura di G. Di Dio, S.EL.CA., Florence, Italy (in Italian). Regione Lombardia, Eni Divisione Agip (2002). Geologia degli acquiferi Padani della Regione Lombardia, a cura di Cipriano Carcano e Andrea Piccin, S.EL.CA., Florence, Italy (in Italian). Scardia, G., R. De Franco, G. Muttoni, S. Rogledi, G. Caielli, C. Carcano, D. Sciunnach, and A. Piccin (2012). Stratigraphic evidence of a Middle Pleistocene climate-driven flexural uplift in the Alps, Tectonics 31, no. 6, doi:10.1029/2012TC003108. Schnabel, P. B. (1973). Effects of local geology and distance from source on earthquake ground motions, Ph.D. Dissertation, University of California, Berkeley. Tarabusi, G., and R. Caputo (2017). The use of H/V measurements for investigating buried tectonic structures: The Mirandola anticline, Northern Italy, as a case study, Int. J. Earth. Sci. 106, no. 1, 341–353. Toscani, G., P. Burrato, D. Di Bucci, S. Seno, and G. Valensise (2009). Plio-Quaternary tectonic evolution of the Northern Apennines thrust fronts (Bologna-Ferrara section, Italy): Seismotectonic implications, Ital. J. Geosci. 128, no. 2, 605–613. Vuan, A., P. Klin, G. Laurenzano, and E. Priolo (2011). Far-source long period displacement response spectra in the Po and Venetian Plains (Italy) from 3-D wavefield simulations, Bull. Seismol. Soc. Am. 101, no. 3, 1055–1072. Yamanaka, H., K. Chimoto, S. Tsuno, Y. P. Dhakal, M. Amrouche, N. Yamada, S. Fukumoto, and K. Eto (2012). Estimation of S-wave velocity profiles and site amplification around the K-NET Tsukidate station, Miyagi prefecture, with reference to large PGA during the 2011 off Pacific Coast of Tohoku earthquake, Japan, J. Disast. Res. 7, 682–692. Zalachoris, G., and E. Rathje (2015). Evaluation of one-dimensional site response techniques using borehole arrays, J. Geotech. Geoenviron. Eng. 141, no. 12, 04015053, doi:10.1061/(ASCE) GT.1943-5606.0001366. Zhu, C., M. Pilz, and F. Cotton (2020). Evaluation of a novel application of earthquake HVSR in site-specific amplification estimation, Soil Dynam. Earthq. Eng. 139, 106301, doi:10.1016/ j.soildyn.2020.106301.; http://hdl.handle.net/2122/15329

  13. 13
    Academic Journal

    المؤلفون: Albarello, Dario

    المصدر: DNA – Di Nulla Academia; Vol. 1 No. 2 (2020); 1-16 ; DNA – Di Nulla Academia; V. 1 N. 2 (2020): Le parole del contagio – II; 1-16 ; 2724-5179 ; 10.6092/issn.2724-5179/v1-n2-2020

    وصف الملف: application/pdf

  14. 14
    Academic Journal

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Pisa, Pisa, Italia, Università degli Studi di Siena

    مصطلحات موضوعية: 04.06. Seismology

  15. 15
    Academic Journal

    المساهمون: Mascandola, Claudia, Massa, Marco, Barani, Simone, Albarello, Dario, Lovati, Sara, Martelli, Luca, Poggi, Valerio

    وصف الملف: STAMPA

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000462137200013; volume:109 (1); firstpage:164; lastpage:177; numberofpages:14; journal:BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA; http://hdl.handle.net/11567/953394; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85063368536

  16. 16
    Conference

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, DISTAV, Università degli Studi di Genova, #PLACEHOLDER_PARENT_METADATA_VALUE#

    مصطلحات موضوعية: Long period soil amplification, Po Plain

    Relation: 38° convegno nazionale del GNGTS; Anderson, J. G., Bodin, P., Brune, J. N., Prince, J., Singh, S. K., Quaas, R., Onate M.: 1986; Strong Ground Motion from the Michoacan, Mexico, Earthquake. Science, 233: 1043-1049. Barani, S., Spallarossa D.: 2017; Soil amplification in probabilistic ground motion hazard analysis, Bull. Earthq. Eng. 15, no. 6, 2525–2545 pp. European Committee for Standardization: 2004; Eurocode 8: design of structures for earthquake resistance. P1: General rules, seismic actions and rules for buildings. Draft 6, Doc CEN/TC250/SC8/N335. Joyner, W. B.:2000; Strong motion from surface waves in deep sedimentary basins, Bulletin of the Seismological Society of America, 90(6B), S95-S112. Kotha, S.R., Bindi, D., Cotton, F.: 2017; From ergodic to region- and site-specific probabilistic seismic hazard assessment: method development and application at European and Middle Eastern sites. Earthq. Spectra 33, 1433-1453 pp. Mascandola, C., Massa M., Barani S., Albarello D., Lovati S., Martelli L., Poggi V.: 2019; Mapping the Seismic Bedrock of the Po Plain (Italy) through Ambient‐Vibration Monitoring. Bulletin of the Seismological Society of America, 109(1), 164-177 pp. Massa, M., Augliera P.: 2013; Teleseisms as estimator of experimental long period site amplifications: example in the Po Plain (Italy) from the 2011, Mw 9.0, Tohoku-Oki (Japan) earthquake, Bull. Seism. Soc. Am., 103 (5): 2541-2556 pp. Milana, G., Bordoni P., Cara F., Di Giulio G., Hailemikael S., Rovelli A.: 2013; One-dimensional velocity structure of the Po River plain (northern Italy) assessed by combining strong motion and ambient noise data, Bulletin of Earthquake Engineering, 12 (5): 2195-2209 pp. Ministero delle Infrastrutture e dei Trasporti: 2018; Aggiornamento delle Norme Tecniche per le Costruzioni. Part 3.2.2: Categorie di sottosuolo e condizioni topografiche, Gazzetta Ufficiale n. 42 del 20 febbraio 2018 (in Italian). Regione Lombardia, Eni Divisione Agip: 2002; Geologia degli acquiferi Padani della Regione Lombardia, a cura di Cipriano Carcano e Andrea Piccin. S.EL.CA., Firenze (in Italian). Regione Emilia-Romagna, ENI-AGIP: 1998; Riserve idriche sotterranee della Regione Emilia-Romagna, a cura di G. Di Dio. S.EL.CA., Firenze (in Italian). Rodriguez-Marek A., Rathje E.M., Bommer J.J., Scherbaum F., Stafford P.J.: 2014; Application of single-station sigma and site-response characterization in a probabilistic seismic-hazard analysis for a new nuclear site, Bulletin of the Seismological Society of America 104:1601-1619 pp.; http://hdl.handle.net/2122/12975

  17. 17
    Conference

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, Dip. di Scienze della Terra dell’Ambiente e della Vita, Università degli Studi di Genova, Dip. di Scienze Fisiche, della Terra e dell’Ambiente, Università degli Studi di Siena

    مصطلحات موضوعية: soil amplification, Po Plain

    Relation: EGU General Assembly 2019; http://hdl.handle.net/2122/12974

  18. 18
    Conference

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, Università degli Studi di Genova, Dipartimento di Scienze della Terra, dell'Ambiente e della Vita, Genova, Università degli Studi di Siena, Dipartimento di scienze fisiche, della terra e dell’ambiente, Siena, Regione Emilia-Romagna, Servizio Geologico, Sismico e dei Suoli, Bologna, Istituto Nazionale di Oceanografica e Geofisica Sperimentale (OGS), Udine

    مصطلحات موضوعية: Seismo-stratigraphic model, Po Plain

    Relation: Congresso congiunto SIMP-SGI- SOGEI-AIV; Mascandola C., Massa M., Barani S., Albarello D., Lovati S., Martelli L., & Poggi V. (2019). Mapping the Seismic Bedrock of the Po Plain (Italy) through Ambient‐Vibration Monitoring. Bulletin of the Seismological Society of America, vol. 109 (1), 164-177, doi:10.1785/0120180193. Regione Emilia-Romagna, ENI–AGIP (1998). Riserve idriche sotterranee della Regione Emilia-Romagna, a cura di Di Dio, G. (Editor), S.EL.CA., Florence, Italy (in Italian). Regione Lombardia, Eni Divisione Agip (2002). Geologia degli acquiferi Padani della Regione Lombardia, Carcano, C. and A. Piccin (Editors), S.EL.CA., Florence, Italy (in Italian).; http://hdl.handle.net/2122/12976

  19. 19
    Academic Journal

    المساهمون: Versace, Pasquale, Zuccaro, Giulio, Albarello, Dario, SCARASCIA MUGNOZZA, Gabriele

    مصطلحات موضوعية: geological risk, glossary, risk assessment

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:001262436800002; issue:1; firstpage:5; lastpage:18; numberofpages:14; journal:ITALIAN JOURNAL OF ENGINEERING GEOLOGY AND ENVIRONMENT; https://hdl.handle.net/11573/1728792

  20. 20
    Academic Journal

    المساهمون: Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia, Università degli Studi di Genova, Università degli Studi di Siena

    وصف الملف: application/pdf

    Relation: Bulletin of Earthquake Engineering; /18 (2020)