Gravity-driven instabilities: interplay between state-and-velocity dependent frictional sliding and stress corrosion damage cracking
arXiv:0904.0944 · doi:10.1029/2009JB006512
Abstract
We model the progressive maturation of a heterogeneous mass towards a gravity-driven instability, characterized by the competition between frictional sliding and tension cracking, using array of slider blocks on an inclined basal surface, which interact via elastic-brittle springs. A realistic state- and rate-dependent friction law describes the block-surface interaction. The inner material damage occurs via stress corrosion. Three regimes, controlling the mass instability and its precursory behavior, are classified as a function of the ratio of two characteristic time scales associated with internal damage/creep and with frictional sliding. For , the whole mass undergoes a series of internal stick and slip events, associated with an initial slow average downward motion of the whole mass, and progressively accelerates until a global coherent runaway is observed. For , creep/damage occurs sufficiently fast compared with nucleation of sliding, causing bonds to break, and the bottom part of the mass undergoes a fragmentation process with the creation of a heterogeneous population of sliding blocks. For the intermediate regime , a macroscopic crack nucleates and propagates along the location of the largest curvature associated with the change of slope from the stable frictional state in the upper part to the unstable frictional sliding state in the lower part. The other important parameter is the Young modulus which controls the correlation length of displacements in the system.
40 pages, 13 figures
References in corpus (12)
- Predictability of catastrophic events: material rupture, earthquakes, turbulence, financial crashes and human birth
- Seismic precursory patterns before a cliff collapse and critical-point phenomena
- Slider-Block Friction Model for Landslides: Application to Vaiont and La Clapiere Landslides
- Positive Feedback, Memory and the Predictability of Earthquakes
- Creep failures in heterogeneous materials
- Creep rupture of viscoelastic fiber bundles
- Andrade and Critical Time-to-Failure Laws in Fiber-Matrix Composites: Experiments and Model
- Towards Landslide Predictions: Two Case Studies
- Failure time and critical behaviour of fracture precursors in heterogeneous materials
- Failure time in the fiber-bundle model with thermal noise and disorder
- Failure properties of fiber bundle models
- Andrade, Omori and Time-to-failure Laws from Thermal Noise in Material Rupture