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  5. New insights into fault activation and stress transfer between en echelon thrusts: The 2012 Emilia, Northern Italy, earthquake sequence
 
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New insights into fault activation and stress transfer between en echelon thrusts: The 2012 Emilia, Northern Italy, earthquake sequence

Author(s)
Cheloni, Daniele  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione ONT, Roma, Italia  
Giuliani, Roberta  
Dipartimento della Protezione Civile, Rome, Italy  
D'Agostino, Nicola  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione ONT, Roma, Italia  
Mattone, Maurizio  
Dipartimento della Protezione Civile, Rome, Italy  
Bonano, Manuela  
Istituto per il Rilevamento Elettromagnetico dell'Ambiente-Consiglio Nazionale delle Ricerche, Naples, Italy  
Fornaro, Gianfranco  
Istituto per il Rilevamento Elettromagnetico dell'Ambiente-Consiglio Nazionale delle Ricerche, Naples, Italy  
Lanari, Riccardo  
Istituto per il Rilevamento Elettromagnetico dell'Ambiente-Consiglio Nazionale delle Ricerche, Naples, Italy  
Reale, Diego  
Istituto per il Rilevamento Elettromagnetico dell'Ambiente-Consiglio Nazionale delle Ricerche, Naples, Italy  
Atzori, Simone  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione ONT, Roma, Italia  
Language
English
Obiettivo Specifico
1T. Deformazione crostale attiva
2T. Sorgente Sismica
3T. Storia Sismica
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Journal of Geophysical Research: Solid Earth  
Issue/vol(year)
6/121(2016)
Publisher
Wiley
Pages (printed)
4742–4766
Date Issued
June 2016
DOI
10.1002/2016JB012823
Alternative Location
http://onlinelibrary.wiley.com/doi/10.1002/2016JB012823/full
URI
https://www.earth-prints.org/handle/2122/11002
Subjects
04. Solid Earth
Subjects

continental tectonics...

source geometry

geodetic modeling

coulomb stress

Abstract
Here we present the results of the inversion of a new geodetic data set covering the 2012 Emilia seismic sequence and the following 1 year of postseismic deformation. Modeling of the geodetic data together with the use of a catalog of 3-D relocated aftershocks allows us to constrain the rupture geometries and the coseismic and postseismic slip distributions for the two main events (Mw 6.1 and 6.0) of the sequence and to explore how these thrust events have interacted with each other. Dislocation modeling reveals that the first event ruptured a slip patch located in the center of the Middle Ferrara thrust with up to 1 m of reverse slip. The modeling of the second event, located about 15 km to the southwest, indicates a main patch with up to 60 cm of slip initiated in the deeper and flatter portion of the Mirandola thrust and progressively propagated postseismically toward the top section of the rupture plane, where most of the aftershocks and afterslip occurred. Our results also indicate that between the two main events, a third thrust segment was activated releasing a pulse of aseismic slip equivalent to a Mw 5.8 event. Coulomb stress changes suggest that the aseismic event was likely triggered by the preceding main shock and that the aseismic slip event probably brought the second fault closer to failure. Our findings show significant correlations between static stress changes and seismicity and suggest that stress interaction between earthquakes plays a significant role among continental en echelon thrusts.
Type
article
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cheloni_etal_JGR_2016.pdf

Size

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Checksum (MD5)

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