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Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults

Many areas of the Earth’s crust deform by distributed extensional faulting and complex fault interactions are often observed. Geodetic data generally indicate a simpler picture of continuum deformation over decades but relating this behaviour to earthquake occurrence over centuries, given numerous p...

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Autores principales: Cowie, P. A., Phillips, R. J., Roberts, G. P., McCaffrey, K., Zijerveld, L. J. J., Gregory, L. C., Faure Walker, J., Wedmore, L. N. J., Dunai, T. J., Binnie, S. A., Freeman, S. P. H. T., Wilcken, K., Shanks, R. P., Huismans, R. S., Papanikolaou, I., Michetti, A. M., Wilkinson, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5359594/
https://www.ncbi.nlm.nih.gov/pubmed/28322311
http://dx.doi.org/10.1038/srep44858
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author Cowie, P. A.
Phillips, R. J.
Roberts, G. P.
McCaffrey, K.
Zijerveld, L. J. J.
Gregory, L. C.
Faure Walker, J.
Wedmore, L. N. J.
Dunai, T. J.
Binnie, S. A.
Freeman, S. P. H. T.
Wilcken, K.
Shanks, R. P.
Huismans, R. S.
Papanikolaou, I.
Michetti, A. M.
Wilkinson, M.
author_facet Cowie, P. A.
Phillips, R. J.
Roberts, G. P.
McCaffrey, K.
Zijerveld, L. J. J.
Gregory, L. C.
Faure Walker, J.
Wedmore, L. N. J.
Dunai, T. J.
Binnie, S. A.
Freeman, S. P. H. T.
Wilcken, K.
Shanks, R. P.
Huismans, R. S.
Papanikolaou, I.
Michetti, A. M.
Wilkinson, M.
author_sort Cowie, P. A.
collection PubMed
description Many areas of the Earth’s crust deform by distributed extensional faulting and complex fault interactions are often observed. Geodetic data generally indicate a simpler picture of continuum deformation over decades but relating this behaviour to earthquake occurrence over centuries, given numerous potentially active faults, remains a global problem in hazard assessment. We address this challenge for an array of seismogenic faults in the central Italian Apennines, where crustal extension and devastating earthquakes occur in response to regional surface uplift. We constrain fault slip-rates since ~18 ka using variations in cosmogenic (36)Cl measured on bedrock scarps, mapped using LiDAR and ground penetrating radar, and compare these rates to those inferred from geodesy. The (36)Cl data reveal that individual faults typically accumulate meters of displacement relatively rapidly over several thousand years, separated by similar length time intervals when slip-rates are much lower, and activity shifts between faults across strike. Our rates agree with continuum deformation rates when averaged over long spatial or temporal scales (10(4) yr; 10(2) km) but over shorter timescales most of the deformation may be accommodated by <30% of the across-strike fault array. We attribute the shifts in activity to temporal variations in the mechanical work of faulting.
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spelling pubmed-53595942017-03-22 Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults Cowie, P. A. Phillips, R. J. Roberts, G. P. McCaffrey, K. Zijerveld, L. J. J. Gregory, L. C. Faure Walker, J. Wedmore, L. N. J. Dunai, T. J. Binnie, S. A. Freeman, S. P. H. T. Wilcken, K. Shanks, R. P. Huismans, R. S. Papanikolaou, I. Michetti, A. M. Wilkinson, M. Sci Rep Article Many areas of the Earth’s crust deform by distributed extensional faulting and complex fault interactions are often observed. Geodetic data generally indicate a simpler picture of continuum deformation over decades but relating this behaviour to earthquake occurrence over centuries, given numerous potentially active faults, remains a global problem in hazard assessment. We address this challenge for an array of seismogenic faults in the central Italian Apennines, where crustal extension and devastating earthquakes occur in response to regional surface uplift. We constrain fault slip-rates since ~18 ka using variations in cosmogenic (36)Cl measured on bedrock scarps, mapped using LiDAR and ground penetrating radar, and compare these rates to those inferred from geodesy. The (36)Cl data reveal that individual faults typically accumulate meters of displacement relatively rapidly over several thousand years, separated by similar length time intervals when slip-rates are much lower, and activity shifts between faults across strike. Our rates agree with continuum deformation rates when averaged over long spatial or temporal scales (10(4) yr; 10(2) km) but over shorter timescales most of the deformation may be accommodated by <30% of the across-strike fault array. We attribute the shifts in activity to temporal variations in the mechanical work of faulting. Nature Publishing Group 2017-03-21 /pmc/articles/PMC5359594/ /pubmed/28322311 http://dx.doi.org/10.1038/srep44858 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Cowie, P. A.
Phillips, R. J.
Roberts, G. P.
McCaffrey, K.
Zijerveld, L. J. J.
Gregory, L. C.
Faure Walker, J.
Wedmore, L. N. J.
Dunai, T. J.
Binnie, S. A.
Freeman, S. P. H. T.
Wilcken, K.
Shanks, R. P.
Huismans, R. S.
Papanikolaou, I.
Michetti, A. M.
Wilkinson, M.
Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title_full Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title_fullStr Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title_full_unstemmed Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title_short Orogen-scale uplift in the central Italian Apennines drives episodic behaviour of earthquake faults
title_sort orogen-scale uplift in the central italian apennines drives episodic behaviour of earthquake faults
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5359594/
https://www.ncbi.nlm.nih.gov/pubmed/28322311
http://dx.doi.org/10.1038/srep44858
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