Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli

<p>We study oscillations recorded at Stromboli and Campi Flegrei by different sensors: seismometers, strainmeters and tiltmeters. We examine both the high-frequency (<span class="inline-formula">&gt;0.5</span>&thinsp;Hz) portion of the spectrum and very long perio...

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Main Authors: M. Falanga, E. De Lauro, S. Petrosino, S. De Martino
Format: Article
Language:English
Published: Copernicus Publications 2019-12-01
Series:Advances in Geosciences
Online Access:https://www.adv-geosci.net/52/1/2019/adgeo-52-1-2019.pdf
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spelling doaj-f67f22cf45874ed2be99cb29d58b31cf2020-11-25T02:20:15ZengCopernicus PublicationsAdvances in Geosciences1680-73401680-73592019-12-01521810.5194/adgeo-52-1-2019Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and StromboliM. Falanga0E. De Lauro1S. Petrosino2S. De Martino3Università degli Studi di Salerno, Dipartimento di Ingegneria dell'Informazione ed Elettrica e Matematica applicata/DIEM, Fisciano, ItalyUniversità degli Studi di Salerno, Dipartimento di Ingegneria dell'Informazione ed Elettrica e Matematica applicata/DIEM, Fisciano, ItalyIstituto Nazionale di Geofisica e Vulcanologia, Sezione di Napoli – Osservatorio Vesuviano, Naples, ItalyUniversità degli Studi di Salerno, Dipartimento di Ingegneria dell'Informazione ed Elettrica e Matematica applicata/DIEM, Fisciano, Italy<p>We study oscillations recorded at Stromboli and Campi Flegrei by different sensors: seismometers, strainmeters and tiltmeters. We examine both the high-frequency (<span class="inline-formula">&gt;0.5</span>&thinsp;Hz) portion of the spectrum and very long period signals up to tidal scales. In this context, seismicity and deformation are investigated on different time scales (from minutes to days/years) in order to identify the basic elements of their interaction, whose understanding should provide new insights on the predictive models. In this work, the strict relation of tides and volcanic processes is shown.</p> <p>At Stromboli, indeed the transition from the stationary phase to the non-stationary phase seems to have a tidal precursor that is related to the duration of the crisis. The subsequent volcanic activity is interpreted as the response of the volcano to restore the equilibrium condition. The moveout from equilibrium produces, first, variations in the standard statistics of explosions, then leads to effusive stage and to a pressure drop in the shallow feeding system. That process induces the nucleation of a gas bubble and the excitation of low frequencies. Campi Flegrei seismicity shows a correlation between the diurnal solar solid tide and the energy released by the long period signals, indicating that the whole mechanism is modulated on a tidal scale. In other words, in the case of Stromboli, a departure from the equilibrium state is marked by solid tide variations in a certain frequency band. On the other hand, at Campi Flegrei diurnal to annual solid tides modulate an increase of volcanic activity.</p>https://www.adv-geosci.net/52/1/2019/adgeo-52-1-2019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Falanga
E. De Lauro
S. Petrosino
S. De Martino
spellingShingle M. Falanga
E. De Lauro
S. Petrosino
S. De Martino
Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
Advances in Geosciences
author_facet M. Falanga
E. De Lauro
S. Petrosino
S. De Martino
author_sort M. Falanga
title Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
title_short Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
title_full Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
title_fullStr Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
title_full_unstemmed Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli
title_sort interaction between seismicity and deformation on different time scales in volcanic areas: campi flegrei and stromboli
publisher Copernicus Publications
series Advances in Geosciences
issn 1680-7340
1680-7359
publishDate 2019-12-01
description <p>We study oscillations recorded at Stromboli and Campi Flegrei by different sensors: seismometers, strainmeters and tiltmeters. We examine both the high-frequency (<span class="inline-formula">&gt;0.5</span>&thinsp;Hz) portion of the spectrum and very long period signals up to tidal scales. In this context, seismicity and deformation are investigated on different time scales (from minutes to days/years) in order to identify the basic elements of their interaction, whose understanding should provide new insights on the predictive models. In this work, the strict relation of tides and volcanic processes is shown.</p> <p>At Stromboli, indeed the transition from the stationary phase to the non-stationary phase seems to have a tidal precursor that is related to the duration of the crisis. The subsequent volcanic activity is interpreted as the response of the volcano to restore the equilibrium condition. The moveout from equilibrium produces, first, variations in the standard statistics of explosions, then leads to effusive stage and to a pressure drop in the shallow feeding system. That process induces the nucleation of a gas bubble and the excitation of low frequencies. Campi Flegrei seismicity shows a correlation between the diurnal solar solid tide and the energy released by the long period signals, indicating that the whole mechanism is modulated on a tidal scale. In other words, in the case of Stromboli, a departure from the equilibrium state is marked by solid tide variations in a certain frequency band. On the other hand, at Campi Flegrei diurnal to annual solid tides modulate an increase of volcanic activity.</p>
url https://www.adv-geosci.net/52/1/2019/adgeo-52-1-2019.pdf
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