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A note on the stress-dilatancy relation for simulated fault gouge
Chris Marone
Geosciences
Research output
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Contribution to journal
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Article
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peer-review
23
Scopus citations
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Keyphrases
Fault Gouge
100%
Cohesion
75%
Load Cycling
75%
Compaction
50%
Dilatancy
50%
Friction Angle
50%
Friction Coefficient
25%
Friction
25%
Laboratory Measurements
25%
Large Displacement
25%
Fault Zone
25%
Loading Conditions
25%
Displacement Rate
25%
Coulomb
25%
Residual Stress
25%
Maximum Shear Stress
25%
Natural Fault
25%
Small Amplitude
25%
Special Loading
25%
Unstable Slip
25%
Theoretical Constraints
25%
Mean Effective Stress
25%
Critical Slip Distance
25%
Seismic Fault
25%
Microearthquakes
25%
Overconsolidation
25%
Microseismic
25%
San Andreas
25%
Shear Load
25%
Stress Variation
25%
Engineering
Dilatancy
100%
Sin
50%
Friction Angle
50%
Effective Stress
25%
Shear Strain
25%
Loading Condition
25%
Displacement Rate
25%
Residual Stress
25%
Maximum Shear Stress
25%
Shear Loads
25%
Coefficient of Friction
25%
Material Science
Shear Strain
100%
Coefficient of Friction
100%
Residual Stress
100%
Shear Loads
100%
Earth and Planetary Sciences
Fault Gouge
100%
Dilatancy
100%
Fault Zone
25%
Coefficient of Friction
25%
Shear Strain
25%
Microearthquake
25%
Overconsolidation
25%