Physical Review Letters · 2003 · 192 citations · 15 references
Grain InertiaViscoplastic FluidStokes Number StEngineeringPhysicsDebris FlowFluid MechanicsMechanical EngineeringCivil EngineeringParticle-laden FlowFluid-solid InteractionGranular MediumRheologyGranular AvalanchesMultiphase FlowSediment TransportSnow Avalanche
Three regimes of granular avalanches in fluids are put in light depending on the Stokes number St which prescribes the relative importance of grain inertia and fluid viscous effects and on the grain/fluid density ratio r. In gas (r>>1 and St>1, e.g., the dry case), the amplitude and time duration of avalanches do not depend on any fluid effect. In liquids (r approximately 1), for decreasing St, the amplitude decreases and the time duration increases, exploring an inertial regime and a viscous regime. These three regimes are described by the analysis of the elementary motion of one grain.
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Granular solids, liquids, and gases
Heinrich M. Jaeger, Sidney R. Nagel, Robert Behringer · Reviews of Modern Physics · 1996 · 2.8K citations
Heinrich M. Jaeger, Sidney R. Nagel · Science · 1992 · 1.1K citations
Granular matter: a tentative view
P. G. de Gennes · Reviews of Modern Physics · 1999 · 650 citations
Engineering, Physics, Debris Flow +11