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  Role of poroelasticity during the early postseismic deformation of the 2010 Maule megathrust earthquake

Pena Hormazabal, C. R., Metzger, S., Heidbach, O., Bedford, J., Bookhagen, B., Moreno, M., Oncken, O., Cotton, F. (2022): Role of poroelasticity during the early postseismic deformation of the 2010 Maule megathrust earthquake. - Geophysical Research Letters, 49, 9, e2022GL098144.
https://doi.org/10.1029/2022GL098144

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Pena Hormazabal, Carlos Raul1, Autor              
Metzger, Sabrina2, Autor              
Heidbach, O.1, Autor              
Bedford, Jonathan2, Autor              
Bookhagen, Bodo3, Autor
Moreno, M.2, Autor              
Oncken, O.2, Autor              
Cotton, Fabrice1, Autor              
Affiliations:
12.6 Seismic Hazard and Risk Dynamics, 2.0 Geophysics, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146032              
24.1 Lithosphere Dynamics, 4.0 Geosystems, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146034              
3External Organizations, ou_persistent22              

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Schlagwörter: DEAL Wiley
 Zusammenfassung: Megathrust earthquakes impose changes of differential stress and pore pressure in the lithosphere-asthenosphere system that are transiently relaxed during the postseismic period primarily due to afterslip, viscoelastic and poroelastic processes. Especially during the early postseismic phase, however, the relative contribution of these processes to the observed surface deformation is unclear. To investigate this, we use geodetic data collected in the first 48 days following the 2010 Maule earthquake and a poro-viscoelastic forward model combined with an afterslip inversion. This model approach fits the geodetic data 14% better than a pure elastic model. Particularly near the region of maximum coseismic slip, the predicted surface poroelastic uplift pattern explains well the observations. If poroelasticity is neglected, the spatial afterslip distribution is locally altered by up to ±40%. Moreover, we find that shallow crustal aftershocks mostly occur in regions of increased postseismic pore-pressure changes, indicating that both processes might be mechanically coupled.

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Sprache(n): eng - Englisch
 Datum: 2022-04-262022
 Publikationsstatus: Final veröffentlicht
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 Identifikatoren: DOI: 10.1029/2022GL098144
OATYPE: Hybrid - DEAL Wiley
GFZPOF: p4 T3 Restless Earth
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Titel: Geophysical Research Letters
Genre der Quelle: Zeitschrift, SCI, Scopus, ab 2023 oa
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Seiten: - Band / Heft: 49 (9) Artikelnummer: e2022GL098144 Start- / Endseite: - Identifikator: ISSN: 1944-8007
ISSN: 0094-8276
CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals182
Publisher: Wiley
Publisher: American Geophysical Union (AGU)