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first 3-D shear wave velocity model of the Ischia Island (Italy) by HVSR inversion.

Authors :
Manzo, Roberto
Nardone, Lucia
Gaudiosi, Guido
Martino, Claudio
Galluzzo, Danilo
Bianco, Francesca
Di Maio, Rosa
Source :
Geophysical Journal International; Sep2022, Vol. 230 Issue 3, p2056-2072, 17p
Publication Year :
2022

Abstract

Following the M <subscript>w</subscript> 3.9 earthquake that occurred in the Ischia island (Naples, southern Italy) on 21 August 2017, the local monitoring seismic network was significantly improved in terms of both number of stations and instrumentation performance. Due to the huge amount of collected seismic ambient noise data, in this paper we present a first 3-D shear wave velocity model of the island retrieved from the inversion of horizontal-to-vertical spectral ratio curves by fixing the shear wave velocities (Vs) and modifying the thicknesses to get the corresponding 1-D Vs models. We are confident about the robustness of the attained models since the inversion process provided a good convergence towards the best-fitting solutions. Then, a first 3-D velocity model was obtained by contouring all the 1-D models obtained for the selected seismic stations to highlight possible lateral variations of the layer thicknesses and to reconstruct the morphology of the deeper interface characterized by a high-impedance contrast. A good correspondence between the 3-D Vs model and the geological features of the island was observed, especially in the northern sector where most of the stations are installed. In particular, the top of the high-impedance contrast interface appears deeper in the northern coastal areas and shallower in the central sector. This result agrees with the structural settings of the island likely due to the resurgence of Mount Epomeo. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0956540X
Volume :
230
Issue :
3
Database :
Complementary Index
Journal :
Geophysical Journal International
Publication Type :
Academic Journal
Accession number :
158364638
Full Text :
https://doi.org/10.1093/gji/ggac157