Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/13293
DC FieldValueLanguage
dc.date.accessioned2020-02-26T10:18:52Z-
dc.date.available2020-02-26T10:18:52Z-
dc.date.issued2020-02-20-
dc.identifier.urihttp://hdl.handle.net/2122/13293-
dc.description.abstractThe Middle Valle Umbra (central Italy) is a NW-SE 20 km long and 10 km wide Quaternary extensional basin located in the internal sector of the Apennine chain. This area historically experienced strong earthquakes that caused significant damages to the outstanding historical heritage. The same area has been recently hit by the 2016 seismic sequence of Amatrice-Visso-Norcia. With the aim to reconstruct the buried geological structures of the basin, a multi-technique geophysical approach was performed. An extended campaign of ambient noise measurements was carried out to investigate the subsurface setting, and to identify the main geological units. We performed three 2D passive arrays to analyze two different sites within the basin; their aperture was between 150 and 752 m for one site and of 48 m for the other site, to characterize the geological units in terms of sediment thickness and shear-wave velocity profile. Data collected were processed with f-k and MSPAC analysis to extract dispersion curves with good resolution in a frequency range of 0.5–10 Hz and 4.5–18 Hz for the two sites respectively. Spectral ratios were computed for every single station ambient noise measurement performed and for all the stations of the bigger array. Our final target is to extend these results to the whole valley, in order to retrieve the attitude of the main geological units and propose a reliable reconstruction of the subsurface geometry of the basin. Another point of this work is to evaluate the site response in the middle of the valley through the analysis of the earthquakes recorded by the accelerometric station IT.CSA (belonging to the Italian Civil Protection) and the corresponding recordings of the nearby rock station IT.ASS.en_US
dc.language.isoEnglishen_US
dc.publisher.nameElsevieren_US
dc.relation.ispartofEngineering Geologyen_US
dc.relation.ispartofseries/ 269 (2020)en_US
dc.subjectsite effectsen_US
dc.subjectseismic site characterizationen_US
dc.subjectsubsoil modelen_US
dc.subjectspectral ratiosen_US
dc.subjectValle Umbraen_US
dc.subjectpassive arraysen_US
dc.titleGeophysical reconstruction of buried geological features and site effects estimation of the Middle Valle Umbra basin (central Italy)en_US
dc.typearticleen
dc.description.statusPublisheden_US
dc.type.QualityControlPeer-revieweden_US
dc.description.pagenumberid 105543en_US
dc.subject.INGV04.06. Seismologyen_US
dc.identifier.doi10.1016/j.enggeo.2020.105543en_US
dc.relation.referencesAA.VV A. Cura di, S. Giaquinto, G. Marchetti, A. Martinelli, E. Martini (Eds.), Le acque sotterranee in Umbria (The groundwater in Umbria), Protagon -GNDCI-CNR (pubbl. 413), Perugia (1991), p. 212 Google Scholar Ge Mi Na, 1962 Ge Mi Na Ligniti e torbe dell'Italia continentale: indagini geominerarie effettuate nel periodo 1958–1961 dalla Geomineraria nazionale (GEMINA) di Roma/[a cura della GEMINA] GEMINA, Roma (1962), p. 319 c1962 Google Scholar Aki, 1957 K. Aki Space and time spectra of stationary waves with special reference to microtremors Bull. Earthquake Res. Inst. Univ. Tokyo, 35 (1957), pp. 415-456 Google Scholar Albani, 1962 A. Albani L'antico lago tiberino Istituto geografico militare (1962) Google Scholar Ambrosetti, 1982 P. Ambrosetti Il sollevamento dell'Italia centrale tra il Pleistocene inferiore e il Pleistocene medio. Contributi conclusivi per la realizzazione della carta neotettonica d'Italia PF Geodinamica-CNR, 513 (1982), pp. 219-223 View Record in ScopusGoogle Scholar Ambrosetti et al., 1987 P. Ambrosetti, M.G. Carboni, M.A. Conti, D. Esu, O. Girotti, G.B. La Monica, B. Landini, G. Parisi Il Pliocene ed il Pleistocene inferiore del bacino del Fiume Tevere nell'Umbria meridionale Geogr. Fis. Din. Quat., 10 (1) (1987), pp. 10-33 View Record in ScopusGoogle Scholar Ambrosetti et al., 1995 P. Ambrosetti, G. Basilici, L. Capasso Barbato, M.G. Carboni, G. Di Stefano, D. Esu, E. Gliozzi, C. Petronio, R. Sardella, E. Squazzini Il Pleistocene inferiore nel ramo Sud-Occidentale del Bacino Tiberino (Umbria): aspetti litostratigrafici e biostratigrafici Il Quaternario, 8 (1) (1995), pp. 19-36 View Record in ScopusGoogle Scholar Anderlini et al., 2016 L. Anderlini, E. Serpelloni, M.E. Belardinelli Creep and locking of a low-angle normal fault: Insights from the Altotiberina fault in the Northern Apennines (Italy) Geophys. Res. Lett., 43 (2016), pp. 4321-4329, 10.1002/2016GL068604 View Record in ScopusGoogle Scholar Argenti, 2004 P. Argenti Plio-quaternary mammal fossiliferous sites of Umbria (Central Italy) Geol. Romana, 37 (2003–2004) (2004), pp. 67-78 Google Scholar Barchi, 2010 M.R. Barchi The Neogene-Quaternary evolution of the Northern Apennines: crustal structure, style of deformation and seismicity M. Beltrando, A. Peccerillo, M. Mattei, S. Conticelli, C. Doglioni (Eds.), The Geology of Italy: Journal of the Virtual Explorer, 36 (2010), 10.3809/jvirtex.2010.00220 Electronic Edition, ISSN 1441-8142. paper 10 Google Scholar Barchi and Ciaccio, 2009 M. Barchi, M. Ciaccio Seismic images of an extensional basin, generated at the hanging-wall of a low-angle normal fault: the case of the Sansepolcro basin (central Italy) Tectonophysics, 479 (2009), pp. 285-293 ArticleDownload PDFView Record in ScopusGoogle Scholar Barchi et al., 2020 M.R. Barchi, M. Lemmi, A. Cura di Note illustrative della Carta Geologia d'Italia, scala 1:50,000 - Foglio 324 - Foligno (2020) Google Scholar Barchi and Mirabella, 2009 M. Barchi, F. Mirabella The 1997–98 Umbria-Marche earthquake sequence: Geological vs. seismological faults Tectonophysics, 476 (2009), pp. 170-179 ArticleDownload PDFView Record in ScopusGoogle Scholar Barchi et al., 1991 M. Barchi, F. Brozzetti, G. Lavecchia Analisi strutturale e geometrica dei bacini della media valle del Tevere e della valle umbra Bollettino della Società Geologica Italiana, 110 (1) (1991), pp. 65-76 View Record in ScopusGoogle Scholar Barchi et al., 1998 M.R. Barchi, G. Minelli, G. Pialli The CROP 03 profile: a synthesis of results on deep structures of the northern Apennines Mem. Soc. Geol. Ital., 52 (1998), pp. 383-400 Google Scholar Bard and Gabriel, 1986 P.Y. Bard, J.C. Gabriel The seismic response of two-dimensional sedimentary deposits with large vertical velocity gradients Bull. Seismol. Soc. Am., 76 (1986), pp. 343-366 View Record in ScopusGoogle Scholar Barker, 1984 G. Barker Ambiente e società nella preistoria dell'Italia centrale - NIS, La Nuova Italia Scientifica Studi NIS Archeologia 2, Arti Grafiche Editoriali S.r.l, Urbino (1984), p. 262 Google Scholar Basili et al., 2008 R. Basili, G. Valensise, P. Vannoli, U. Fracassi, S. Mariano, M. Tiberti, E. Boschi The Database of Individual Seismogenic sources (DISS), version 3: summarizing 20 years of research on Italy's earthquake geology Tectonophysics, 453 (2008), pp. 20-43 ArticleDownload PDFView Record in ScopusGoogle Scholar Basilici, 1997 G. Basilici Sedimentary facies in an extensional and deep-lacustrine depositional system: the Pliocene Tiberino Basin, Central Italy Sediment. Geol., 109 (1–2) (1997), pp. 73-94 ArticleDownload PDFView Record in ScopusGoogle Scholar Beretta et al., 2018 G.P. Beretta, M. Avanzini, T. Marangoni, M. Burini, G. Schirò, J. Terrenghi, G. Vacca Groundwater modeling of the withdrawal sustainability of Cannara artesian aquifer (Umbria, Italy) Acque Sotterranee-Italian Journal of Groundwater, 7 (3) (2018), pp. 47-60 CrossRefView Record in ScopusGoogle Scholar Bettig et al., 2001 B. Bettig, P.Y. Bard, F. Scherbaum, J. Riepl, F. Cotton, C. Cornou, D. Hatzfeld Analysis of dense array noise measurements using the modified spatial auto-correlation method (SPAC): application to the Grenoble area Boll. Geof. Teorica Appl., 42 (3–4) (2001), pp. 281-304 View Record in ScopusGoogle Scholar Bizzarri et al., 2011 R. Bizzarri, A. Albianelli, P. Argenti, A. Baldanza, R. Colacicchi, G. Napoleone The latest continental filling of Valle Umbra (Tiber Basin, central Italy) dated to one million years ago by magnetostratigraphy Il Quaternario, 24 (1) (2011), pp. 51-65 View Record in ScopusGoogle Scholar Bizzarri et al., 2018 R. Bizzarri, P. Corrado, D. Magri, E. Martinetto, D. Esu, V. Caprai, ..., A. Baldanza Palaeoenvironmental and climatic inferences from the late early Pleistocene lacustrine deposits in the eastern Tiberino Basin (central Italy) Quat. Res., 90 (1) (2018), pp. 201-221 CrossRefView Record in ScopusGoogle Scholar Boncio et al., 2004 P. Boncio, G. Lavecchia, B. Pace Defining a model of 3D seismogenic sources for seismic hazard assessment applications: the case of central Apennines (Italy) J. Seismol., 8 (2004), pp. 408-425 Google Scholar Bonnefoy-Claudet et al., 2006a S. Bonnefoy-Claudet, F. Cotton, P.-Y. Bard The nature of the seismic noise wave field and its implication for site effects studies: a literature review Earth Sci. Rev., 79 (3–4) (2006), pp. 205-227 ArticleDownload PDFView Record in ScopusGoogle Scholar Bonnefoy-Claudet et al., 2006b S. Bonnefoy-Claudet, C. Cornou, P.-Y. Bard, F. Cotton, P. Moczo, J. Kristek, D. Fäh H/V ratio: a tool for site effects evaluation. Results from 1-D noise simulations Geophys. J. Int., 167 (2006), pp. 827-837, 10.1111/j.1365-246X.2006.03154.x View Record in ScopusGoogle Scholar Bonnefoy-Claudet et al., 2008 S. Bonnefoy-Claudet, A. Köhler, C. Cornou, M. Wathelet, P.-Y. Bard Effects of Love Waves on Microtremor H/V Ratio Bull. Seismol. Soc. Am., 98 (1) (2008), pp. 288-300, 10.1785/0120070063 CrossRefView Record in ScopusGoogle Scholar Borcherdt, 1970 R.D. Borcherdt Effects of local geology on ground motion near San Francisco Bay Bull. Seismol. Soc. Am., 60 (1) (1970), pp. 29-61 Google Scholar Brunori et al., 2018 C.A. Brunori, D. Famiani, V. Sapia, F. Villani, L. Pizzimenti, M. Caciagli, L. Melelli, F. Mirabella, M. Barchi Seismotectonics study of the Media Valle Umbra area at different space and time scales: an integration of geomorphological, geophysical and remote sensing data The 36th General Assembly of the European Seismological Commission ESC2018-S13-583 (2018), 10.13140/RG.2.2.13946.95685 Google Scholar Bucci et al., 2016 F. Bucci, F. Mirabella, M. Santangelo, M. Cardinali, F. Guzzetti Photo-geology of the Montefalco Quaternary Basin, Umbria, Central Italy J. Maps, 12 (sup1) (2016), pp. 314-322 CrossRefView Record in ScopusGoogle Scholar Caciagli et al., 2019 M. Caciagli, S. Pucci, J. Batlló, S. Cesca, T. Braun Did the Deadly 1917 Monterchi Earthquake Occur on the Low-Angle Alto Tiberina (Central Italy) Normal Fault? Seismol. Res. Lett. (2019), 10.1785/0220180155 Google Scholar Cattuto et al., 2005 C. Cattuto, L. Gregori, L. Melelli, A. Taramelli, D. Broso I conoidi nell'evoluzione delle conche intermontane umbre Geografia Fisica e Dinamica del Quaternario, 7 (2005), pp. 89-95 View Record in ScopusGoogle Scholar Cinque et al., 1993 A. Cinque, E. Patacca, P. Scandone, M. Tozzi Quaternary kinematic evolution of the Southern Appennines. Relationships between surface geological features and deep lithospheric structures Ann. Geophys., 36 (2) (1993) Google Scholar Cinti et al., 2015 F.R. Cinti, L. Alfonsi, A. D'Alessio, S. Marino, C.A. Brunori Faulting and ancient earthquakes at Sybaris archaeological site, Ionian Calabria, Southern Italy Seismol. Res. Lett., 86 (1) (2015), 10.1785/02201401071 Google Scholar Coltorti and Pieruccini, 1997 M. Coltorti, P. Pieruccini Middle-Upper Pliocene “Compression” and Middle Pleistocene “Extension” in the East Tiber Basin: from “synform” to “extensional” basins in the Tyrrhenian side of the Northern Apennines (Central Italy) Il Quaternario, 10 (2) (1997), pp. 521-528 View Record in ScopusGoogle Scholar Conti and Girotti, 1977 M.A. Conti, O. Girotti Il Villafranchiano nel “Lago Tiberino”, ramo sud-occidentale: schema stratigrafico e tettonico Geol. Romana, 16 (1977), pp. 67-80 View Record in ScopusGoogle Scholar Cresta et al., 1989 S. Cresta, S. Monechi, G. Parisi, A. Baldanza, V. Reale Stratigrafia del Mesozoico e Cenozoico nell'area umbro-marchigiana: itinerari geologici sull'Appennino umbro-marchigiano (italia) Istituto poligrafico e zecca dello stato (1989) Google Scholar D'Agostino et al., 2001 N. D'Agostino, R. Giuliani, M. Mattone, L. Bonci Active crustal extension in the central Apennines (Italy) inferred from GPS measurements in the interval 1994–1999 Geophys. Res. Lett., 28 (10) (2001), pp. 2121-2124 View Record in ScopusGoogle Scholar D'Agostino et al., 2011 N. D'Agostino, S. Mantenuto, E. D'Anastasio, R. Giuliani, M. Mattone, S. Calcaterra, P. Gambino, L. Bonci Evidence for localized active extension in the central Apennines (Italy) from global positioning system observations Geology, 39 (2011), pp. 291-294, 10.1130/G31796.1 CrossRefView Record in ScopusGoogle Scholar Devoti et al., 2017 R. Devoti, N. D'Agostino, E. Serpelloni, G. Pierantonio, F. Riguzzi, A. Avallone, L. Franco A combined velocity field of the Mediterranean region Ann. Geophys., 60 (2017), 10.4401/ag-7059 Google Scholar DISS Working Group, 2018 DISS Working Group Database of Individual Seismogenic Sources (DISS), Version 3.2.1: A compilation of potential sources for earthquakes larger than M 5.5 in Italy and surrounding areas Istituto Nazionale di Geofisica e Vulcanologia (2018) http://diss.rm.ingv.it/diss/ https://doi.org/10.6092/INGV.IT-DISS3.2.1 Google Scholar Fäh et al., 2001 D. Fäh, F. Kind, D. Giardini A theoretical investigation of average H/V ratios Geophys. J. Int., 145 (2001), pp. 535-549 View Record in ScopusGoogle Scholar García-Jerez et al., 2016 A. García-Jerez, J. Piña-Flores, F.J. Sánchez-Sesma, F. Luzón, M. Perton A computer code for forward calculation and inversion of the H/V spectral ratio under the diffuse field assumption Comput. Geosci., 97 (2016), pp. 67-78, 10.1016/j.cageo.2016.06.016 ArticleDownload PDFView Record in ScopusGoogle Scholar Giaquinto and Martinelli, 1991 S. Giaquinto, A. Martinelli Studi sull'acquifero artesiano di Cannara (Study on the Cannara artesian aquifer) AA.VV., Le acque sotterranee in Umbria, a cura di S. Giaquinto, G. Marchetti, A. Martinelli, E. Martini Protagon -GNDCI-CNR (pubbl. 413), Perugia (1991), pp. 145-167 View Record in ScopusGoogle Scholar Gregori, 1988 L. Gregori Il" Bacino di Bastardo"; genesis ed evoluzione nel quadro della tettonica recente Bollettino della Societá Geologica Italiana, 107 (1) (1988), pp. 141-151 Google Scholar Guidoboni et al., 2018 E. Guidoboni, G. Ferrari, D. Mariotti, A. Comastri, G. Tarabusi, G. Sgattoni, G. Valensise CFTI5Med, catalogue of strong earthquakes in Italy (461 B.C.–1997) and Mediterranean area (760 B.C.–1500), Technical Report Istituto Nazionale di Geofisica e Vulcanologia (2018) available at http://storing.ingv.it/cfti/cfti5 last accessed April 2019 Google Scholar Guzzetti et al., 2009 F. Guzzetti, M. Manunta, F. Ardizzone, A. Pepe, M. Cardinali, G. Zeni, P. Reickenbach, R. Lanari Analysis of ground deformation detected using the SBAS-DInSAR technique in Umbria, Central Italy Pure Appl. Geoph, 166 (2009), pp. 1425-1459 0033–4553/09/081425–35 https://doi.org/10.1007/s00024-009-0491-4 View Record in ScopusGoogle Scholar Havenith et al., 2007 H.B. Havenith, D. Fah, U. Polom, A. Roulle S-wave velocity measurements applied to the seismic microzonation of Basel, Upper Rhine Graben Geoph. J. Int., 170 (1) (2007), pp. 346-358, 10.1111/j.1365-246X.2007.03422.x View Record in ScopusGoogle Scholar Joyner et al., 1981 W.B. Joyner, R.E. Warrick, T.E. Fumal The effect of Quaternary alluvium on strong ground motion in the Coyote Lake, California, earthquake of 1979 Bull. Seismol. Soc. Am., 71 (4) (1981), pp. 1333-1349 View Record in ScopusGoogle Scholar Kawase et al., 2015 H. Kawase, S. Matsushima, T. Satoh, F.J. Sánchez-Sesma Applicability of theoretical horizontal-to-vertical ratio of microtremors based on the diffuse field concept to previously observed data Bull. Seismol. Soc. Am., 105 (6) (2015), pp. 3092-3103, 10.1785/0120150134 CrossRefView Record in ScopusGoogle Scholar Kawase et al., 2018 H. Kawase, Y. Mori, F. Nagashima Difference of horizontal-to-vertical spectral ratios observed earthquakes and microtremors and its application to S-wave velocity inversion based on the diffuse field concept Earth, Planets Space, 70 (2018), p. 1, 10.1186/s40623-017-0766-4 CrossRefGoogle Scholar Lachet and Bard, 1994 C. Lachet, P.-Y. Bard Numerical and Theoretical Investigations on the possibilities and limitations of Nakamura's technique J. Phys. Earth, 42 (1994), pp. 377-397 View Record in ScopusGoogle Scholar Lacoss et al., 1969 R.T. Lacoss, E.J. Kelly, M.N. Toksoz Estimation of seismic noise structure using arrays Geophysics, 34 (1969), pp. 21-38 View Record in ScopusGoogle Scholar Lavecchia et al., 1994 G. Lavecchia, F. Brozzetti, M. Barchi, J. Keller, M. Menichetti Seismotectonic zoning in east-central Italy deduced from the analysis of the Neogene to present deformations and related stress fields Geol. Soc. Am. Bull., 106 (1994), pp. 1107-1120 View Record in ScopusGoogle Scholar Lermo and Chavez-Garcia, 1993 J. Lermo, F.J. Chavez-Garcia Site effect evaluation using spectral ratios with only one station Bull. Seismol. Soc. Am., 83 (5) (1993), pp. 1574-1594 View Record in ScopusGoogle Scholar Lermo and Chavez-Garcia, 1994 J. Lermo, F.J. Chavez-Garcia Are microtremors useful in site response evaluation? Bull. Seismol. Soc. Am., 84 (5) (1994), pp. 1350-1364 View Record in ScopusGoogle Scholar Lontsi et al., 2019 A.M. Lontsi, A. García-Jerez, J.C. Molina-Villegas, F.J. Sánchez-Sesma, C. Molkenthin, M. Ohrnberger, F. Krüger, R. Wang, D. Fäh A generalized theory for full microtremor horizontal-to-vertical [H/V(z, f)] spectral ratio interpretation in offshore and onshore environments Geophys. J. Int, 218 (2) (2019), pp. 1276-1297, 10.1093/gji/ggz223 CrossRefView Record in ScopusGoogle Scholar Luzi et al., 2016 L. Luzi, F. Pacor, R. Puglia Italian Accelerometric Archive v 2.1. Istituto Nazionale di Geofisica e Vulcanologia, Dipartimento della Protezione Civile Nazionale (2016), 10.13127/ITACA/2.1 last access May 2019 Google Scholar Malinverno and Ryan, 1986 A. Malinverno, W.B. Ryan Extension in the Tyrrhenian Sea and shortening in the Apennines as result of arc migration driven by sinking of the lithosphere Tectonics, 5 (2) (1986), pp. 227-245 View Record in ScopusGoogle Scholar Mariani et al., 2007 S. Mariani, M. Mainiero, M. Barchi, K. Van Der Borg, H. Vonhof, A. Montanari Use of speleologic data to evaluate Holocene uplifting and tilting: an example from the Frasassi anticline (northeastern Apennines, Italy) Earth Planet. Sci. Lett., 257 (1–2) (2007), pp. 313-328 ArticleDownload PDFView Record in ScopusGoogle Scholar Martinetto et al., 2014 E. Martinetto, A. Bertini, G. Basilici, A. Baldanza, R. Bizzarri, M. Cherin, ..., M.R. Pontini The plant record of the Dunarobba and Pietrafitta sites in the Plio-Pleistocene palaeoenvironmental context of central Italy Alpine Mediterranean Quaternary, 27 (1) (2014), pp. 29-72 View Record in ScopusGoogle Scholar Martini and Sagri, 1993 I.P. Martini, M. Sagri Tectono-sedimentary characteristics of Late Miocene-Quaternary extensional basins of the Northern Apennines, Italy Earth Sci. Rev., 34 (3) (1993), pp. 197-233 ArticleDownload PDFView Record in ScopusGoogle Scholar Melelli et al., 2014 L. Melelli, S. Pucci, L. Saccucci, F. Mirabella, F. Pazzaglia, M. Barchi Morphotectonics of the Upper Tiber Valley (Northern Apennines, Italy) through quantitative analysis of drainage and landforms Rendiconti Lincei, 25 (2) (2014), pp. 129-138 CrossRefView Record in ScopusGoogle Scholar Miller and Pursey, 1955 G.F. Miller, H. Pursey On the partition of energy between elastic waves in a semi-infinite solid Proc. R. Soc. Lond. A, 233 (1192) (1955), pp. 55-69 View Record in ScopusGoogle Scholar Mirabella et al., 2018 F. Mirabella, F. Bucci, M. Santangelo, M. Cardinali, G. Caielli, R. De Franco, F. Guzzetti, M.R. Barchi Alluvial fan shifts and stream captures driven by extensional tectonics in central Italy J. Geol. Soc., 175 (5) (2018), pp. 788-805 CrossRefView Record in ScopusGoogle Scholar Murgia et al., 2019 F. Murgia, C. Bignami, C.A. Brunori, C. Tolomei, L. Pizzimenti Ground deformations controlled by hidden faults: multi-frequency and multitemporal InSAR techniques for urban hazard monitoring Remote Sens., 2019 (11) (2019), p. 2246, 10.3390/rs11192246 CrossRefGoogle Scholar Nakamura, 1989 Y. Nakamura A method for dynamic characteristics estimation of subsurface using microtremor on the ground surface Q. Rep. Railway Tech. Res. Inst., 30 (1) (1989), pp. 25-33 View Record in ScopusGoogle Scholar Nogoshi and Igarashi, 1971 M. Nogoshi, T. Igarashi On the amplitude characteristic of microtremor (part 2) (in Japanese with English abstract) J. Seism. Soc. Japan, 24 (1971), pp. 26-40 CrossRefGoogle Scholar Petronio et al., 2002 C. Petronio, P. Argenti, L. Caloi, D. Esu, O. Girotti, R. Sardella Updating Villafranchian mollusc and mammal faunas of Umbria and Latium (Central Italy) Geol. Romana, 36 (2000−2002) (2002), pp. 369-387 Google Scholar Poggi et al., 2012 V. Poggi, B. Edwards, D. Fäh The quarter-wavelength average velocity: a review of some past and recent application developments 15th WCEE, Lisbon 2012 (2012) Google Scholar Pondrelli et al., 2006 S. Pondrelli, S. Salimbeni, G. Ekström, A. Morelli, P. Gasperini, G. Vannucci The Italian CMT dataset from 1977 to the present Phys. Earth Planet. Inter., 159 (2006), pp. 286-303, 10.1016/j.pepi.2006.07.008,159/3-4 ArticleDownload PDFView Record in ScopusGoogle Scholar Pucci et al., 2014 S. Pucci, F. Mirabella, F. Pazzaglia, M.R. Barchi, L. Melelli, P. Tuccimei, M. Soligo, L. Saccucci Interaction between regional and local tectonic forcing along a complex Quaternary extensional basin: Upper Tiber Valley, Northern Apennines, Italy Quat. Sci. Rev., 102 (2014), pp. 111-132 ArticleDownload PDFView Record in ScopusGoogle Scholar Radmilli, 1960 A.M. Radmilli Considerazioni sul Mesolitico italiano Annali dell'Università di Ferrara (1960) Sez. 15, 1, 29-48 Google Scholar Ricci Lucchi, 1986 F. Ricci Lucchi The foreland basin system of the northern apennines and related clastic wedges: a preliminary outline Giornale di Geologia, 48 (1986), pp. 165-185 View Record in ScopusGoogle Scholar Rovida et al., 2016 A. Rovida, M. Locati, R. Camassi, B. Lolli, P. Gasperini CPTI15, the 2015 Version of the Parametric Catalogue of Italian Earthquakes Istituto Nazionale di Geofisica e Vulcanologia (2016), 10.6092/INGV.ITCPTI15 Google Scholar Saccucci, 2011 L. Saccucci Analisi geologica e geomorfologica finalizzata alla ricostruzione dell'evoluzione Quaternaria del Bacini Tiberino PhD Tesi Perugia University (2011) Google Scholar Sambridge, 1999 M. Sambridge Geophysical inversion with a neighbourhood algorithm I. Searching a parameter space J. Geophys. Res., 103 (1999), pp. 4839-4878 View Record in ScopusGoogle Scholar Sánchez-Sesma et al., 2011 F.J. Sánchez-Sesma, M. Rodríguez, U. Iturrarán-Viveros, F. Luzón, M. Campillo, L. Margerin, A. García-Jerez, M. Suarez, M.A. Santoyo, A. Rodríguez-Castellanos A theory for microtremor H/V spectral ratio: Application for a layered medium Geophys. J. Int. Exp. Lett., 186 (1) (2011), pp. 221-225, 10.1111/j.1365-246X.2011.05064.x CrossRefView Record in ScopusGoogle Scholar Tarquini et al., 2007 S. Tarquini, I. Isola, M. Favalli, F. Mazzarini, M. Bisson, M.T. Pareschi, E. Boschi TINITALY/01: a new Triangular Irregular Network of Italy Ann. Geophys., 50 (2007), pp. 407-425 View Record in ScopusGoogle Scholar Wathelet, 2008 M. Wathelet An improved neighborhood algorithm: parameter conditions and dynamic scaling Geophys. Res. Lett., 35 (2008), Article L09301, 10.1029/2008GL033256 Google Scholar Yamanaka et al., 1994 H. Yamanaka, M. Takemura, H. Ishida, M. Niwa Characteristics of long-period microtremors and their applicability in exploration of deep sedimentary layers Bull. Seism. Soc. Am., 84 (6) (1994), pp. 1831-1841en_US
dc.description.obiettivoSpecifico2T. Deformazione crostale attivaen_US
dc.description.journalTypeJCR Journalen_US
dc.contributor.authorFamiani, Daniela-
dc.contributor.authorBrunori, Carlo Alberto-
dc.contributor.authorPizzimenti, Luca-
dc.contributor.authorCara, Fabrizio-
dc.contributor.authorCaciagli, Marco-
dc.contributor.authorMelelli, Laura-
dc.contributor.authorMirabella, Francesco-
dc.contributor.authorBarchi, Massimiliano Rinaldo-
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentDepartment of Physics and Geology, University of Perugia, Perugia, Italyen_US
dc.contributor.departmentDepartment of Physics and Geology, University of Perugia, Perugia, Italyen_US
dc.contributor.departmentDepartment of Physics and Geology, University of Perugia, Perugia, Italyen_US
item.openairetypearticle-
item.cerifentitytypePublications-
item.languageiso639-1en-
item.grantfulltextopen-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.fulltextWith Fulltext-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Bologna, Bologna, Italia-
crisitem.author.deptUniversity of Perugia, Department of Physics and Geology (Perugia, Italy)-
crisitem.author.deptUniversità degli Studi di Perugia-
crisitem.author.deptUniversità degli studi di Perugia-
crisitem.author.orcid0000-0001-8020-2152-
crisitem.author.orcid0000-0003-0862-8161-
crisitem.author.orcid0000-0003-1495-8175-
crisitem.author.orcid0000-0002-1702-563X-
crisitem.author.orcid0000-0002-7248-4118-
crisitem.author.orcid0000-0002-8788-7403-
crisitem.author.orcid0000-0003-0431-4341-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.classification.parent04. Solid Earth-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
Appears in Collections:Article published / in press
Files in This Item:
File Description SizeFormat
Famiani et al 2020 Eng_Geol.pdf2.59 MBAdobe PDFView/Open
article.pdfRestricted Paper5.33 MBAdobe PDF
Show simple item record

WEB OF SCIENCETM
Citations

1
checked on Feb 10, 2021

Page view(s)

457
checked on Apr 24, 2024

Download(s)

69
checked on Apr 24, 2024

Google ScholarTM

Check

Altmetric