Scattering Attenuation Images of the Control of Thrusts and Fluid Overpressure on the 2016–2017 Central Italy Seismic Sequence

Author:

Gabrielli Simona12ORCID,Akinci Aybige1,De Siena Luca23ORCID,Del Pezzo Edoardo45ORCID,Buttinelli Mauro1ORCID,Maesano Francesco Emanuele1ORCID,Maffucci Roberta1

Affiliation:

1. Istituto Nazionale di Geofisica e Vulcanologia Rome Italy

2. School of Geosciences University of Aberdeen Aberdeen UK

3. Institute of Geosciences Johannes Gutenberg University University of Mainz Mainz Germany

4. Osservatorio Vesuviano Istituto Nazionale di Geofisica e Vulcanologia Napoli Italy

5. Istituto Andaluz de Geofisica Universidad de Granada Granada Spain

Abstract

AbstractDeep fluid circulation likely triggered the large extensional events of the 2016–2017 Central Italy seismic sequence. Nevertheless, the connection between fault mechanisms, main crustal‐scale thrusts, and the circulation and interaction of fluids with tectonic structures controlling the sequence is still debated. Here, we show that the 3D temporal and spatial mapping of peak delays, proxy of scattering attenuation, detects thrusts and sedimentary structures and their control on fluid overpressure and release. After the mainshocks, scattering attenuation drastically increases across the hanging wall of the Monti Sibillini and Acquasanta thrusts, revealing fracturing and fluid migration. Before the sequence, low‐scattering volumes within Triassic formations highlight regions of fluid overpressure, which enhances rock compaction. Our results highlight the control of thrusts and paleogeography on the sequence and hint at the monitoring potential of the technique for the seismic hazard assessment of the Central Apennines and other tectonic regions.

Funder

Ministero dell’Istruzione, dell’Università e della Ricerca

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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