2020
DOI: 10.1029/2020jb019670
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Fault Stability Across the Seismogenic Zone

Abstract: Across the seismogenic zone, the transition from brittle to plastic deformation corresponds to a semibrittle regime where brittle fracturing and plastic flow coexist at high strength conditions. Thorough experimental investigations on brittle‐plastic transition are crucial to understand why natural faults behave in stable or unstable ways at varying crustal depths and why large earthquakes generally nucleate at the base of the seismogenic zone. To investigate semibrittle deformation in carbonates and the condi… Show more

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Cited by 16 publications
(59 citation statements)
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“…For σ3=45 MPa, friction coefficient reaches 0.40 before the first stress drop and stabilizes around 0.33 during established seismic cycle; While for σ3=180 MPa, peak and average plateau friction coefficients are close to 0.32 and 0.25, respectively. This low friction is close to that observed in similar experimental conditions [1,2].…”
Section: Stress Historysupporting
confidence: 92%
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“…For σ3=45 MPa, friction coefficient reaches 0.40 before the first stress drop and stabilizes around 0.33 during established seismic cycle; While for σ3=180 MPa, peak and average plateau friction coefficients are close to 0.32 and 0.25, respectively. This low friction is close to that observed in similar experimental conditions [1,2].…”
Section: Stress Historysupporting
confidence: 92%
“…As for the experiments reported in [1,2], the numerical model reproduces the deformation of a saw-cut sample (Fig. 1).…”
Section: Simulationssupporting
confidence: 68%
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“…Following recent data analysis methods (see Aubry et al., 2020; Meyer et al., 2019), strain partitioning between brittle and ductile deformations can be obtained by comparing the strain measured with the LVDTs and with the strain gages. This method helps in the differentiation between bulk deformation and sliding on a fault plane.…”
Section: Interpretation and Discussionmentioning
confidence: 99%