Broadband seismic data and fibre optic technologies for dense monitoring and quantification of volcanic events (INFRADAS)

Cite as
Jousset, Philippe (2026): Broadband seismic data and fibre optic technologies for dense monitoring and quantification of volcanic events (INFRADAS). GFZ Data Services. Dataset/Seismic Network. doi:10.14470/0/8V007505.
Identifier
10.14470/0/8V007505
DataCite metadata
HTML | JSON | XML | INSPIRE | Local XML source file
Terms/rights
Creative Commons Attribution 4.0 International CC-BY-4.0 Request access
Creator(s)
orcid:0000-0002-5628-0238 Jousset, Philippe a
a GFZ Helmholtz Centre for Geosciences, Potsdam, Germany
  • (Abstract) From July to September 2019, a dense seismic array consisting of 26 broadband stations (Trillium Compact 120s) was deployed across a flat area near the eruptive vents of Mount Etna in Sicily, with 4 additional stations installed close to the summit. The array was installed in the vicinity of the vents to validate dynamic strain measurements obtained from fibre-optic cables. The primary objective was to demonstrate the applicability of distributed dynamic strain sensing for volcano monitoring and to evaluate its performance in comparison with conventional seismic sensors. Waveform data is available from the GEOFON data centre, under network code 3I.
Title
Broadband seismic data and fibre optic technologies for dense monitoring and quantification of volcanic events (INFRADAS)
Publisher
GFZ Data Services
Publication year
2026
Dataset / Seismic Network
Dates
  1. Collected 2025-06-03
  2. Accepted 2025-12-17
  3. Submitted 2026-02-24
  4. Issued 2026-02-25
  5. Created 2026-02-25
  6. Available 2026-12-01
Place(s)
  1. Etna volcano
Contributor(s)
Subjects
Funding reference(s)
  1. European Commission (731070)
  2. National Institute of Geophysics and Volcanology
  3. GFZ Helmholtz Centre for Geosciences (GIPP201919)
  4. Helmholtz Association of German Research Centres
Language
en
Sizes
  1. 217GB
Reference(s)
  1. Cited by Jousset, P.; Currenti, G.; Schwarz, B.; Chalari, A.; Tilmann, F.; Reinsch, T.; Zuccarello, L.; Privitera, E.; Krawkzyk, C. M. (2022). Fibre optic distributed acoustic sensing of volcanic events. Nature Communications 13:1753, https://doi.org/10.1038/s41467-022-29184-w
  2. Cited by Currenti, G.; Jousset, P.; Napoli, R.; Krawczyk, C.; Weber, M. (2021). On the comparison of strain measurements from fibre optics with a dense seismometer array at Etna volcano (Italy). Solid Earth, 12, 993-1003, https://doi.org/10.5194/se-12-993-2021
  3. Cited by Diaz-Meza, Sergio; Jousset, Philippe; Currenti, Gilda; Wollin, Christopher; Krawczyk, Charlotte; Clarke, Andy; Chalari, Athena (2023). On the Comparison of Records from Standard and Engineered Fiber Optic Cables at Etna Volcano (Italy). Sensors, 23, 7, 3735, https://doi.org/10.3390/s23073735
  4. Cited by Diaz-Meza, Sergio; Jousset, Philippe; Currenti, Gilda; Costes, Lucile; Krawczyk, Charlotte M. (2025). Insights in nonlinear ground response in volcanic environments from distributed dynamic strain sensing. Scientific Reports, 15(1), 32698, https://doi.org/10.1038/s41598-025-20368-0
FDSN network code
3I
Network dates
2019
Data time range
2019–2019
Station count
30
Seismic metadata
fdsnws-station

To retrieve waveform data and metadata (including instrument responses) for this and other seismic networks, see here. Network (data set) values are taken from DataCite XML with Metadata Properties version 4.4. Contact us if you are the PI and wish to make changes. Old-style network page for this network here.

Station List for Network Code 3I

Code
Station description
Begin
End
Loc
Channels
Flags
BB01
ETNA
2019-07-03
2019-09-13
--
HHE HHN HHZ
BB02
ETNA
2019-07-03
2019-09-13
--
HHE HHN HHZ
BB03
ETNA
2019-07-03
2019-09-13
--
HHE HHN HHZ
BB04
ETNA
2019-07-03
2019-09-13
--
HHE HHN HHZ
BB05
ETNA
2019-07-03
2019-09-03
--
HHE HHN HHZ
BB06
ETNA
2019-07-03
2019-09-13
--
HHE HHN HHZ
BB07
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB08
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB09
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB10
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB11
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB12
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB13
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB14
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB15
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB16
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB17
ETNA
2019-07-04
2019-09-23
--
HHE HHN HHZ
BB18
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB19
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB20
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB21
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB22
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB23
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB24
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB25
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB26
ETNA
2019-07-04
2019-09-14
--
HHE HHN HHZ
BB27
ETNA
2019-07-05
2019-09-16
--
HHE HHN HHZ
BB28
ETNA
2019-08-13
2019-09-16
--
HHE HHN HHZ
BB29
ETNA
2019-07-18
2019-09-16
--
HHE HHN HHZ
BB30
ETNA
2019-07-18
2019-09-16
--
HHE HHN HHZ