Tectonophysics2022,Vol.82212.DOI:10.1016/j.tecto.2021.229181

Volumetric and shear strain localization throughout triaxial compression experiments on rocks

Ben-Zion, Yehuda Renard, Francois McBeck, Jessica
Tectonophysics2022,Vol.82212.DOI:10.1016/j.tecto.2021.229181

Volumetric and shear strain localization throughout triaxial compression experiments on rocks

Ben-Zion, Yehuda 1Renard, Francois 2McBeck, Jessica2
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作者信息

  • 1. Univ Southern Calif
  • 2. Univ Oslo
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Abstract

Deformation localization is a widely observed, but rarely quantified process in the crust. Recent observations suggest that the localization of seismicity and fracture networks can help identify the approach to catastrophic failure. Here, we quantify the localization processes of the volumetric and deviatoric strain components in twelve triaxial compression experiments imaged with X-ray tomography. We capture three-dimensional images of the rock cores during triaxial compressing toward failure, and then calculate the local strain components using digital volume correlation. The divergence and curl of the incremental displacement vector field provide the volumetric and deviatoric components of the strain field. We quantify localization using the proportion of the rock occupied by high magnitudes of the volumetric and deviatoric strains, and the Gini coefficient of these high magnitude strains, which measures the deviation from a uniform process. We find that the vast majority, but not all, of the experiments experience strain localization toward failure. The rocks typically experience their maximum degree of strain localization not immediately preceding failure, but on average at 90% of the failure stress. The volumetric strain tends to localize more than the deviatoric strain. These observations support using the localization of the volumetric strain, along with the deviatoric strain, to identify the evolution of the precursory phase preceding earthquakes.

Key words

Localization/Strain/Triaxial compression/Shear/Volumetric/Large earthquakes/STRUCTURAL INHERITANCE/DEFORMATION/FRACTURE/GROWTH/DAMAGE/COALESCENCE/SEISMICITY/EVOLUTION/VEINS/MICROTOMOGRAPHY

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出版年

2022
Tectonophysics

Tectonophysics

EISCI
ISSN:0040-1951
被引量5
参考文献量60
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