Array analysis of seismo-volcanic activity with distributed acoustic sensing

Author:

Biagioli Francesco12ORCID,Métaxian Jean-Philippe1,Stutzmann Eléonore1,Ripepe Maurizio2,Bernard Pascal1ORCID,Trabattoni Alister3ORCID,Longo Roberto4,Bouin Marie-Paule1

Affiliation:

1. Université Paris Cité, Institut de physique du globe de Paris , CNRS, 75005 Paris , France

2. Department of Earth Sciences, University of Florence , 50121 Firenze , Italy

3. Université Côte d’Azur, IRD, CNRS, Observatoire de la Côte d’Azur, Géoazur , 06560 Valbonne , France

4. Groupe Signal Image et Instrumentation (GSII), École Supérieure d’Électronique de l’Ouest (ESEO) , 49100 Angers , France

Abstract

SUMMARY Continuous seismic monitoring of volcanoes is challenging due to harsh environments and associated hazards. However, the investigation of volcanic phenomena is essential for eruption forecasting. In seismo-volcanic applications, distributed acoustic sensing (DAS) offers new possibilities for long-duration surveys. We analyse DAS strain rate signals generated by volcanic explosions and tremor at Stromboli volcano (Italy) recorded along 1 km of dedicated fibre-optic cable. We validate DAS recordings with colocated nodal seismometers. Converting node measurements to strain rate, we observe a perfect match in phase between DAS and node waveforms. However, DAS amplitudes appear to be around 2.7 times smaller than those of node records, which we explain as due to the inefficient ground-to-fibre strain transfer in the loose cable. We invert time delays between strain rate waveforms and confirm that the DAS enables us to retrieve a dominant and persistent seismic source in the proximity of active craters. This stable source location is confirmed by node array analyses. Despite an observed high noise level of strain rate signals outside a range of 2–15 Hz, our results demonstrate the potential of this new technology in monitoring volcanic areas.

Funder

ANR

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

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