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  • 1
    Publication Date: 2020-11-09
    Description: A research approach that integrated different geophysical methods for archaeological prospection was carried out to understand the nature and chronological development of the curvilinear structure in the archaeological site of “Villa degli Antonini” (Genzano di Roma, Italy) (hereafter VA), and the finding of the settlement structure in the archaeological site of Rota Ria (Mugnano in Teverina, Viterbo, Italy) (hereafter RR) (SKRAME et al., 2016). To this purpose a detailed magnetic prospecting survey was carried out since the walls of the curvilinear structure are made of volcanic rocks, such as lava and tuffs of local provenience, that induce a very high degree of magnetization. Even in the RR archaeological framework, both the geological environment and the buried walls made of peperino and tuff blocks, suggested the use of magnetic prospecting survey. In order to determine the exact shape and therefore the best excavation strategy for these buried archaeological structures, a series of different geophysical investigations (Electromagnetic (EMI) and Ground penetrating radar survey (GPR)) were carried out. The final step of the investigation was the excavation in the targeted sector of the study areas in order to test the validity of the geophysical interpretations. The most interesting result was that, in both cases, the excavations have confirmed the results obtained during the magnetic surveying.
    Description: AGH University of Science and Technology
    Description: Published
    Description: Kraków, Poland
    Description: 7A. Geofisica per il monitoraggio ambientale
    Description: 7SR AMBIENTE – Servizi e ricerca per la società
    Keywords: applied geophysics ; GPR ; FDEM ; magnetic ; Rota Rio ; archaeological site ; Villa degli Antonini
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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  • 2
    Publication Date: 2020-11-18
    Description: Vengono mostrati i primi risultati dei rilievi geofisici e geochimici nella zona di Guidonia che hanno consentito una caratterizzazione geologica e strutturale preliminare fornendo elementi utili per la comprensione della genesi del fenomeno di sprofondamento in atto e della sua evoluzione.
    Description: Published
    Description: 8 maggio 2014, Roma
    Description: 7A. Geofisica per il monitoraggio ambientale
    Description: 6SR VULCANI – Servizi e ricerca per la società
    Keywords: sinkhole ; Acque Albule Basin ; Guidonia ; geophisical survys ; geochimical survey
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Abstract
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  • 3
    Publication Date: 2021-02-23
    Description: We present the results of multidisciplinary investigations of two significant sites, located in the Acque Albule Basin (AAB), 25 km Northeast of Rome (Italy). This basin has been interpreted as a transtensional structure, lying in the western margin of the Apennine range and affecting the Plio-Pleistocene sedimentary and volcanic sequences. During late Pleistocene times, AAB has been filled in with thermogenic travertine of variable thickness. Since historical time, lithoid travertine has been quarried, becoming the main building material during the Roman period (Lapis Tiburtinus). At present, the mining activity still represents the main economic resource of the region together with thermal baths. After the end of the II World War this area has experienced a strong urbanization and marshy lands were transformed into densely populated areas affected by subsidence and sinkhole phenomena. In order to characterize these environmental hazards from the geophysical and geotechnical point of view, we chose two test sites close to relevant anthropic infrastructures. Site A, located at the southern side of the Guidonia military airport and beside an important road; site B, a few kilometers South-East of site A, lies next to the Regina and Colonnelle Lakes and close to the Roma- Pescara railway. The former feature is a large sinkhole depression, hundreds of meters in width, characterized by ongoing subsidence, whereas the latter consists of two sinkholes actually acting as springs. Both sites lie in proximity of inferred faults, which would affect the AAB in the N-S and NE-SW– directions respectively. The aim of this study is to compare the two cases by collecting geological, geomorphological and geophysical parameters and thus testing the variable controlling their formation and development. We also extended the geophysical campaign in the surrounding area using a multidisciplinary approach to image both surface and subsurface features. We carried out stratigraphic and geomorphological survey, 2 and 3D Geoelectrical Tomography (ERT), differential GPS altimetry, gravity, magnetic, seismic, and soil gas measurements. Moreover, two drillings have been bored inside and outside the depression area of the Site A, reaching depths of 60 and 20 meter, respectively. Geotechnical parameters of the recovered stratigraphy were also measured by laboratory tests. In general, the approach we propose could provide key elements to recognize similar situations in sinkhole prone areas. Moreover, comparative analysis together with the monitoring of the A site can represent useful tools to understand the genesis and dynamics of phenomena and hopefully to forecast their evolution, particularly in the parts of the basin where active movements caused fractures and damages to buildings and infrastructures.
    Description: Published
    Description: Napoli 7-8-9 settembre 2016
    Description: 7SR AMBIENTE – Servizi e ricerca per la società
    Keywords: Acque Albule Basin ; risk assessment ; sinkhole
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Abstract
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  • 4
    Publication Date: 2021-07-14
    Description: The study deals with the morphogenetic meaning of several linear scarps that carved the paleo-landsurface of Valle Daria, an extended geomorphological feature located between Barisciano (AQ) and Prata D'Ansidonia (AQ). These villages are situated in the southern termination of the L'Aquila intermontane basin (one of the largest basin of the central Apennines), nearby the epicentral area of the 6th April 2009 earthquake (Mw 6.1). These scarps, up to 3 meters high and up to 1.5 km long, define narrow/elongated flat-bottom depressions, filled by colluvial deposits. These depressions are carved into fluvial-deltaical conglomerates, dated back to the lower Pleistocene. Even if different authors have interpreted these shapes as a paleodrainage or secondary faults, a morphometrical study of the Valle Daria paleo-landsurface provided several information which cast doubt on these two interpretations. In order to better understand the nature and the state of activity of these lineaments, geological, geomorphological and geophysical surveys were carried out. A paleoseismological trench pointed out two events of deformation. The curvilinear shape of the shear plane seems to be related to a slow deformation, attributable to collapse-phenomena. Three GPR profiles, two ERT profiles and two microgravimetrical profiles seem to corroborate this interpretation. Therefore, this study permits to attribute the genesis of these scarps to tectono-karstic phenomena, excluding the presence of an active and capable fault.
    Description: Published
    Description: 346-349
    Description: 4T. Sismologia, geofisica e geologia per l'ingegneria sismica
    Description: N/A or not JCR
    Keywords: Active and capable fault ; Quaternary geology ; paleoseismology ; applied geophysics
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 5
    Publication Date: 2020-11-18
    Description: L’individuazione di aree a rischio sinkhole utilizzando la microgravimetria ha interessato il bacino delle Acque Albule già dal 2001 per l’abitato di Guidonia e Collefiorito e successivamente l’area di Bagni di Tivoli e di Villalba (2005). Nel periodo 2006-2008 sono stati realizzati alcuni interventi microgravimetrici in zone più sensibili quali Borgata Massicci, Villanova e Lago delle Tartare. In alcune zone sono state rinvenuti e segnalati minimi gravimetrici ascrivibili a possibili cavità nel sottosuolo. Inoltre, nel caso di Bagni di Tivoli e Villalba oltre alla microgravimetria sono stati effettuati anche rilievi sismici e prospezioni geoelettriche. I dati microgravimetrici sono stati integrati con tutte le stazioni gravimetriche effettuate sull’intera area del bacino, dal fiume Aniene fino ai rilievi carbonatici meso-cenozoici dei Cornicolani e dei Lucretili. Il dettaglio raggiunto dalla microgravimetria integrata agli altri metodi geofisici, ha permesso di delineare il quadro strutturale del bacino delle Acque Albule che appare notevolmente differenziato da zona a zona portando nuovi contributi alla conoscenza geologico-strutturale e idrogeologica di questa parte della Campagna Romana, nonché all’evoluzione ambientale nel corso degli ultimi millenni.
    Description: Published
    Description: Rome, 3-4 December 2009
    Description: 7A. Geofisica per il monitoraggio ambientale
    Description: 7SR AMBIENTE – Servizi e ricerca per la società
    Keywords: gravity survey ; Sinkhole ; Acque Albule Basin
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Abstract
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  • 6
    Publication Date: 2020-11-18
    Description: Nuovi dati gravimetrici hanno permesso di caratterizzare il Bacino delle Acque Albule (BAA) dal punto di vista geologico-strutturale nella porzione più profonda definendo la geometria del bacino e stimando la profondità dei depositi carbonatici Meso-Cenozoici nonché gli spessori dei depositi Plio-Quaternari che li ricoprono e quelli dei travertini.
    Description: Published
    Description: 8 maggio 2014, Roma
    Description: 7A. Geofisica per il monitoraggio ambientale
    Description: 7SR AMBIENTE – Servizi e ricerca per la società
    Keywords: Acque Albule Basin ; gravity survey ; sinkhole ; gravity discontinuity ; Sinkhole hazard ; travertine ; bedrock
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Abstract
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  • 7
    Publication Date: 2018-03-08
    Description: The Plio-Quaternary Acque Albule Basin is already known for the occurrence of sinkholes; since the spring 2014, it has been ongoing the study of an active subsidence process, which formed a depressed area near the Guidonia village. During the last year, the phenomenon has become more intense giving rise to two collapses along the eastern rim of the depression. Thus, geophysical and geogeochemical investigation campaigns started in order to understand the genesis and evolution of the phenomenon. Survey results allowed a geological and structural characterization, showing the presence of “travertino” at the depression margins and its absence therein. It has been recognized, by the geophysics, features with NW-SE and NNE-SSW direction ascribable to a possible depression fracturing and consistent with regional structural trends. Thus, it has been possible to plan and perform geognostic investigation consisting in two drillings aimed to define the stratigraphy of the marginal and inner part of the depression.
    Description: Published
    Description: 7 - 16
    Description: 2TR. Ricostruzione e modellazione della struttura crostale
    Description: JCR Journal
    Keywords: Acque Albule Basin ; sinkhole ; subsidence ; geophysical prospecting ; geochemical prospecting
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 8
    Publication Date: 2018-03-21
    Description: Preliminary gravity results are presented in a study carried out in the "Il Laghetto" area and in the surroundings. This area is situated in the NNE of Rome suburb near Via Palombarese among Guidonia town, which is in the east side, Mentana town, which is in the west side and S.Angelo Romano town, which is in the north side. From a morphological point of view "Il Laghetto" area is a subcircular hole, 30 metres deep and 140 metres wide at the top and 120 metres wide at the bottom. In the 30 last years this place has been affected by anthropic buildings. The first gravity data carried out in this place show that Bouguer and Residual anomalies are qualitatively similar, indicating a gravity minimum approximately in the hole’s center.The surrounding area is characterized by two different fluvial trends; one of these is oriented in the N-S side and the other one in the NW-SE side. More specifically, these fluvial trends could indicate a general profile of tectonic structures in this area. At the same time, neither faults nor tectonic structures nor other geologic elements are evident in this place. This is a result of geologic rocks outcrop: Plio-Pleistocene clayes deposits, high-potassium volcanic rocks of the Roman Comagmatic Province (products erupted during the first Tuscolano-Artemisio caldera stage, Middle-Upper Pleistocene) and recent continental deposits.In order to recognize other morphological holes, which should be re-covered by some metres thick recent continental deposits in this area, it has been thought to carry out gravity survey on a particular area situated in the north side of "Il Laghetto" area: the Fosso di Marco Simone.
    Description: Published
    Description: Nice, France, 25-30 April 2004
    Description: 7A. Geofisica per il monitoraggio ambientale e geologia medica
    Description: 3SR. AMBIENTE - Servizi e ricerca per la Società
    Keywords: sinkholes ; il laghetto ; Marco Simone ; Acque Albule Basin ; microgravity survey ; genesis
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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  • 9
    Publication Date: 2018-03-21
    Description: Historical research has shown that Terracina (Latina, Latium) played a fundamental role in the maritime and land traffic since before the foundation of the colony. The settlement was established where the organized system of maritime, land, coastal, and fluvial transport had the most ideal conditions to constitute an important commercial crossroads, apparently since the beginning of recorded history. In order to reconstruction the buried archaeological structures attributed to the ancient Roman port, traditionally attributed to Traiano, in the current area of the harbour of Terracina, it was carried out a gravity survey, more than 380 gravity stations. The gravity method enables to recognize the cavity and the structures of the buildings underground through the results of variations density in the subsoil. Seismic tomography treats the problem of identifying a buried structure as a wave propagation process by inverting the linearized wave equation to compute the spatial distribution of the slowness of the velocity. The purpose of our tomographic study is to further test the method and to guide archaeologists in their future excavations by locating and identifying buried structures. In the residual gravity anomaly map a series of positive anomalies are visible which confirm the round structures and the pier of the buried foundations of the Imperial harbour. Unfortunately, little remains of the functioning facilities of the harbour’s activities. The modern construction of the harbour, in fact, has to be developed around the new inhabitable commercial area, know today as Terracina Bassa or Borgo alla Marina. It had to be developed with a modern infrastructure of a harbor area, as in the construction of the rooms for storage of goods, warehouses, as well as for the thermal baths, hotels and amphitheatre. Furthermore, there are always the positive anomalies that characterize the area to the north-east of “Montone” hill where archaeological remains are easily visible near Via Lungolinea Pio VI. A large negative anomaly is situated in correspondence with “Montone”. Gravity information shows an average density of the hill approximately 1.10 g/cm3, notably less than the recorded data relative to dry sand, approximately 1.6 g/cm3. The low value founds hits at the possibility of an “emptiness” in the subsoil of “Montone” hill, attribuiting to the possible ancient buried constructions (the rooms for storage of goods and warehouses). The seismic refraction method provides information on the low frequency component of the model for the shallowest layers. In this way, it is possible to fix the thickness of the surface layer, as well as to determine a velocity model. Use of the refraction method in “Montone” hill has resulted in the determination of the depth of the walls upon which the foundations were built. The sandy covering would therefore be natural from aeolian origins, like all the dunes present along this area near the southern coast of Latium. This hypothesis is in contrast to the information recorded from 1600 that attributes the formation of the reliefs accumulated to sand having been dredged up from the harbour.
    Description: Published
    Description: Vienna, Austria, 2-7 May 2010
    Description: 7A. Geofisica per il monitoraggio ambientale e geologia medica
    Description: 3SR. AMBIENTE - Servizi e ricerca per la Società
    Description: 1VV. Altro
    Keywords: Terracina ; Latium ; Italy ; microgravity survey ; seismic survey ; Montone hill ; applied geophysics ; archaeological surveys ; roman harbour ; pre-roman harbour
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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  • 10
    Publication Date: 2018-03-21
    Description: Historical research has shown that Terracina (Latina, Latium) played a fundamental role in the maritime and land traffic since before the foundation of the colony. The settlement was established where the organized system of maritime, land, coastal, and fluvial transport had the most ideal conditions to constitute an important commercial crossroads, apparently since the beginning of recorded history. In order to reconstruction the buried archaeological structures attributed to the ancient Roman port, traditionally attributed to Traiano, in the current area of the harbour of Terracina, it was carried out a gravity survey, more than 380 gravity stations. This method enables to recognize the cavity and the structures of the buildings underground through the results of variations density in the subsoil. In the residual gravity anomaly map a series of positive anomalies are visible which confirm the round structures and the pier of the buried foundations of the Imperial harbour. Unfortunately, little remains of the functioning facilities of the harbour’s activities. The modern construction of the harbour, in fact, has to be developed around the new inhabitable commercial area, know today as Terracina Bassa or Borgo alla Marina. It had to be developed with a modern infrastructure of a harbor area, as in the construction of the rooms for storage of goods, warehouses, as well as for the thermal baths, hotels and amphitheatre. Furthermore, there are always the positive anomalies that characterize the area to the north-east of “Montone” hill where archaeological remains are easily visible near Via Lungolinea Pio VI. A large negative anomaly is situated in correspondence with “Montone”. Gravity information shows an average density of the hill approximately 1.10 g/cm3, notably less than the recorded data relative to dry sand, approximately 1.6 g/cm3. The low value founds hits at the possibility of an “emptiness” in the subsoil of “Montone” hill, attribuiting to the possible ancient buried constructions (the rooms for storage of goods and warehouses). The sandy covering would therefore be natural from aeolian origins, like all the dunes present along this area near the southern coast of Latium. This hypothesis is in contrast to the information recorded from 1600 that attributes the formation of the reliefs accumulated to sand having been dredged up from the harbour.
    Description: Published
    Description: Vienna, Austria, 19-24 April 2009
    Description: 7A. Geofisica per il monitoraggio ambientale e geologia medica
    Description: 3SR. AMBIENTE - Servizi e ricerca per la Società
    Description: 1VV. Altro
    Keywords: Terracina ; Latium ; Italy ; Roman harbour ; microgravity survey ; archaeology ; Montone hill ; applied geophysics
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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