C. Collettini
Fault weakening due to CO2 degassing in the Northern Apennines: short- and long-term processes
Collettini, C.; Cardellini, C.; Chiodini, G.; De Paola, N.; Holdsworth, R.E.; Smith, S.A.F.
Authors
C. Cardellini
G. Chiodini
Professor Nicola De Paola nicola.de-paola@durham.ac.uk
Professor
R.E. Holdsworth
S.A.F. Smith
Contributors
C.A.J. Wibberley
Editor
W. Kurz
Editor
J. Imber
Editor
R.E. Holdsworth
Editor
C. Collettini
Editor
Abstract
Abstract: The influx of fluids into fault zones can trigger two main types of weakening process that operate over different timescales and facilitate fault movement and earthquake nucleation. Short- and long-term weakening mechanisms along faults require a continuous fluid supply near the base of the brittle crust, a condition satisfied in the extended/extending area of the Northern Apennines of Italy. Here carbon mass balance calculations, coupling aquifer geochemistry to isotopic and hydrological data, define the presence of a large flux (c. 12 160 t/day) of deep-seated CO2 centred in the extended sector of the area. In the currently active extending area, CO2 fluid overpressures at 85% of the lithostatic load have been documented in two deep (4–5 km) boreholes. In the long-term, field studies on an exhumed regional low-angle normal fault show that, during the entire fault history, fluids reacted with fine-grained cataclasites in the fault core to produce aggregates of weak, phyllosilicate-rich fault rocks that deform by fluid assisted frictional–viscous creep at sub-Byerlee friction values (m , 0.3). In the short term, fluids can be stored in structural traps, such as beneath mature faults, and stratigraphical traps such as Triassic evaporites. Both examples preserve evidence for multiple episodes of hydrofracturing induced by short-term cycles of fluid pressure build-up and release. Geochemical data on the regional-scale CO2 degassing process can therefore be related to field observations on fluid rock interactions to provide new insights into the deformation processes responsible for active seismicity in the Northern Apennines.
Citation
Collettini, C., Cardellini, C., Chiodini, G., De Paola, N., Holdsworth, R., & Smith, S. (2008). Fault weakening due to CO2 degassing in the Northern Apennines: short- and long-term processes. In C. Wibberley, W. Kurz, J. Imber, R. Holdsworth, & C. Collettini (Eds.), The Internal Structure of Fault Zones: Implications for Mechanical and Fluid-Flow Properties (1-20). The Geological Society. https://doi.org/10.1144/sp299.10
Publication Date | 2008 |
---|---|
Publisher | The Geological Society |
Pages | 1-20 |
Series Title | Geological Society, London, Special Publications |
Series Number | 299 |
Book Title | The Internal Structure of Fault Zones: Implications for Mechanical and Fluid-Flow Properties |
DOI | https://doi.org/10.1144/sp299.10 |
Public URL | https://durham-repository.worktribe.com/output/1690365 |
You might also like
Coseismic fault lubrication by viscous deformation
(2021)
Journal Article
The Humbly Grove, Herriard and Hester’s Copse Fields, UK onshore
(2020)
Journal Article
Friction of Mineralogically Controlled Serpentinites and Implications for Fault Weakness
(2018)
Journal Article
Downloadable Citations
About Durham Research Online (DRO)
Administrator e-mail: dro.admin@durham.ac.uk
This application uses the following open-source libraries:
SheetJS Community Edition
Apache License Version 2.0 (http://www.apache.org/licenses/)
PDF.js
Apache License Version 2.0 (http://www.apache.org/licenses/)
Font Awesome
SIL OFL 1.1 (http://scripts.sil.org/OFL)
MIT License (http://opensource.org/licenses/mit-license.html)
CC BY 3.0 ( http://creativecommons.org/licenses/by/3.0/)
Powered by Worktribe © 2025
Advanced Search