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Earthquake statistics inferred from plastic events in soft-glassy materials

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arxiv 1605.00673 v1 pith:D7CY7ITY submitted 2016-05-02 physics.geo-ph nlin.CDphysics.flu-dyn

Earthquake statistics inferred from plastic events in soft-glassy materials

classification physics.geo-ph nlin.CDphysics.flu-dyn
keywords approacheventsplasticcontinuumearthquakeearthquakesmaterialsphysics
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose a new approach for generating synthetic earthquake catalogues based on the physics of soft glasses. The continuum approach produces yield-stress materials based on Lattice-Boltzmann simulations. We show that, if the material is stimulated below yield stress, plastic events occur, which have strong similarities with seismic events. Based on a suitable definition of displacement in the continuum, we show that the plastic events obey a Gutenberg-Richter law with exponents similar to those for real earthquakes. We further find that average acceleration, energy release, stress drop and recurrence times scale with the same exponent. The approach is fully self-consistent and all quantities can be calculated at all scales without the need of ad hoc friction or statistical laws. We therefore suggest that our approach may lead to new insight into understanding of the physics connecting the micro and macro scale of earthquakes.

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