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  • 1
    Publication Date: 2021-01-05
    Description: We present 4 years of continuous seafloor deformation measurements carried out in the Campi Flegrei caldera (Southern Italy), one of the most hazardous and populated volcanic areas in the world. The seafloor sector of the caldera has been monitored since early 2016 by the MEDUSA marine research infrastructure, consisting of four instrumented buoys installed where sea depth is less than 100 m. Each MEDUSA buoy is equipped with a cabled, seafloor module with geophysical and oceanographic sensors and a subaerial GPS station providing seafloor deformation and other environmental measures. Since April 2016, the GPS vertical displacements at the four buoys show a continuous uplift of the seafloor with cumulative measured uplift ranging between 8 and 20 cm. Despite the data being affected by environmental noise associated with sea and meteorological conditions, the horizontal GPS displacements on the buoys show a trend coherent with a radial deformation pattern. We use jointly the GPS horizontal and vertical velocities of seafloor and on-land deformations for modeling the volcanic source, finding that a spherical source fits best the GPS data. The geodetic data produced by MEDUSA has now been integrated with the data flow of other monitoring networks deployed on land at Campi Flegrei.
    Description: Published
    Description: 615178
    Description: 4V. Processi pre-eruttivi
    Description: JCR Journal
    Keywords: Seafloor geodesy, volcanic caldera ; 04.08. Volcanology ; 04.03. Geodesy ; 05.04. Instrumentation and techniques of general interest
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 2
    Publication Date: 2020-02-26
    Description: We present the equivalence of the ground acceleration and water pressure variation induced by earthquakes, using data from co-located seafloor instruments in shallow water. The equivalence is evident from a strong similarity of the waveforms, which completely and persistently overlap along the entire duration of the recordings, and it is supported by a high cross-correlation value. Moreover, the comparison of the amplitude spectra of the acceleration and pressure signals confirms the existence of a frequency range of ‘forced oscillations’, where the pressure variations are proportional to the ground vertical component of the acceleration. We demonstrate the equivalence of the signals for a set of local and regional earthquakes on a wide range of magnitude (2.7〈M〈6.8), recorded by seismometers and hydrophones operating in a coastal monitoring infrastructure, at less than 80 m of water depth, located in the Gulf of Pozzuoli (Campi Flegrei caldera, Southern Italy). The infrastructure consists of four marine platforms which integrate a wide set of sensors, in particular a seafloor multi-sensor module, hosting a broad-band seismometer (120s – 100 Hz), a low frequency hydrophone (down to 0.01 Hz) and a bottom pressure recorder. The simple linear relation between sea bottom pressure variation and vertical seafloor acceleration measurement is widely reported in the scientific literature and well verified in previous works. All these works use data from low frequency waveforms of large magnitude tsunamigenic earthquakes, recorded by pairs of bottom pressure recorders and accelerometers. Here, for the first time, short period data recorded by pairs of hydrophones and seismometers are used expanding the theory validity to a larger frequency range. The high correlation value between the ground acceleration, derived from the ground velocity, and hydrophone pressure signals allows to calibrate hydrophones by comparison with co-located accelerometers, or seismometers, used as a reference in a range of frequencies that is very difficult to reproduce in lab. The proved similarity of the recordings underpins the possibility that hydrophones can be more extensively used in place of accelerometers in those marine environment, where seismic sensor accurate installation is usually not easy and not always affordable.
    Description: Unpublished
    Description: San Francisco
    Description: 1IT. Reti di monitoraggio e sorveglianza
    Keywords: hydrophone ; 05.04. Instrumentation and techniques of general interest
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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  • 3
    Publication Date: 2023-10-25
    Description: Abstract: Muon radiography is a technique based on the measurement of absorption profiles of muons as they pass through matter. This measurement allows to obtain an image of the inner structure of large volume objects and is suitable to be applied in several fields, such as volcanology, archaeology and civil engeneering. One of the main applications concerns the study of volcanic structures; indeed it is possible to use this technique to measure the mass distribution inside the edifice of a volcano providing useful information to better understand the possible eruption mechanisms. The MURAVES (MUon RAdiography of VESuvius) project aims to the study of the summital cone of Mt. Vesuvius near Naples in Italy, one of the most dangerous active volcanoes in the world. The MURAVES apparatus is a modular, robust muon hodoscope system with a low power consumption, optimized to be used in inhospitable environments like the surroundings of volcanoes. The complete detection system is an array of identical tracking modules, each with an area of 1 m2 , based on the use of plasic scintillators. The technologies, the status and the data analysis strategy of the experiment will be presented in this paper.
    Description: Published
    Description: C03014
    Description: 2V. Struttura e sistema di alimentazione dei vulcani
    Description: JCR Journal
    Keywords: Muography, Vesuvius ; Interaction of radiation with matter ; Scintillators and scintillating fibres and light guides ; Detector cooling and thermo-stabilization ; Simulation methods and programs ; 05.04. Instrumentation and techniques of general interest ; 04.08. Volcanology
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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