Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock

Sound and Vision: In-situ synchrotron x-ray imaging with simultaneous acoustic monitoring captures grain scale damage mechanisms and unlocks the relationship between seismic and aseismic processes during catastrophic failure of porous rock.

Bibliographic Details
Main Authors: Alexis Cartwright-Taylor, Maria-Daphne Mangriotis, Ian G. Main, Ian B. Butler, Florian Fusseis, Martin Ling, Edward Andò, Andrew Curtis, Andrew F. Bell, Alyssa Crippen, Roberto E. Rizzo, Sina Marti, Derek. D. V. Leung, Oxana V. Magdysyuk
Format: Article
Language:English
Published: Nature Portfolio 2022-10-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-33855-z
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author Alexis Cartwright-Taylor
Maria-Daphne Mangriotis
Ian G. Main
Ian B. Butler
Florian Fusseis
Martin Ling
Edward Andò
Andrew Curtis
Andrew F. Bell
Alyssa Crippen
Roberto E. Rizzo
Sina Marti
Derek. D. V. Leung
Oxana V. Magdysyuk
author_facet Alexis Cartwright-Taylor
Maria-Daphne Mangriotis
Ian G. Main
Ian B. Butler
Florian Fusseis
Martin Ling
Edward Andò
Andrew Curtis
Andrew F. Bell
Alyssa Crippen
Roberto E. Rizzo
Sina Marti
Derek. D. V. Leung
Oxana V. Magdysyuk
author_sort Alexis Cartwright-Taylor
collection DOAJ
description Sound and Vision: In-situ synchrotron x-ray imaging with simultaneous acoustic monitoring captures grain scale damage mechanisms and unlocks the relationship between seismic and aseismic processes during catastrophic failure of porous rock.
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spelling doaj.art-6fa6f9070c7f470b84092f0ed4793fe42022-12-22T03:26:25ZengNature PortfolioNature Communications2041-17232022-10-0113111410.1038/s41467-022-33855-zSeismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rockAlexis Cartwright-Taylor0Maria-Daphne Mangriotis1Ian G. Main2Ian B. Butler3Florian Fusseis4Martin Ling5Edward Andò6Andrew Curtis7Andrew F. Bell8Alyssa Crippen9Roberto E. Rizzo10Sina Marti11Derek. D. V. Leung12Oxana V. Magdysyuk13School of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghIndependent Electronics Developer, Edinburgh HacklabEPFL Center for Imaging, École Polytechnique Fédérale de Lausanne (EPFL)School of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghSchool of GeoSciences, University of EdinburghBeamline I12-JEEP, Diamond Light Source Ltd., Harwell Science and Innovation CampusSound and Vision: In-situ synchrotron x-ray imaging with simultaneous acoustic monitoring captures grain scale damage mechanisms and unlocks the relationship between seismic and aseismic processes during catastrophic failure of porous rock.https://doi.org/10.1038/s41467-022-33855-z
spellingShingle Alexis Cartwright-Taylor
Maria-Daphne Mangriotis
Ian G. Main
Ian B. Butler
Florian Fusseis
Martin Ling
Edward Andò
Andrew Curtis
Andrew F. Bell
Alyssa Crippen
Roberto E. Rizzo
Sina Marti
Derek. D. V. Leung
Oxana V. Magdysyuk
Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
Nature Communications
title Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
title_full Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
title_fullStr Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
title_full_unstemmed Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
title_short Seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
title_sort seismic events miss important kinematically governed grain scale mechanisms during shear failure of porous rock
url https://doi.org/10.1038/s41467-022-33855-z
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