Rheological properties of dense flows of hard particles are singular as one approaches the jamming threshold where flow ceases both for aerial granular flows dominated by inertia and for over-damped suspensions. Concomitantly, the length scale characterizing velocity correlations appears to diverge at jamming. Here we introduce a theoretical framework that proposes a tentative, but potentially complete, scaling description of stationary flows. Our analysis, which focuses on frictionless particles, applies both to suspensions and inertial flows of hard particles. We compare our predictions with the empirical literature, as well as with novel numerical data. Overall, we find a very good agreement between theory and observations, except for fr...
International audienceThe shear strength of dense granular flows is generally described by an effect...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
Rheological properties of dense flows of hard particles are singular as one approaches the jamming t...
International audienceRecent years have seen significant progress in our understanding of the rheolo...
We use numerical simulations to study the effect of particle friction on suspension flows of non-Bro...
Flows of hard granular materials depend strongly on the interparticle friction coefficient mu(p) and...
12 pages, 9 figs. Réf Journal: Phys. Rev. E 91, 012203 (2015)International audienceWe use large sca...
We investigate in this article the macroscopic behavior of sheared suspensions of spherical particle...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
A granular material is a collection of discrete, solid particles of macroscopic size dispersed in an...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceHysteresis is a major feature of the solid-liquid transition in granular mater...
Rapid granular flows and particle-laden flows were studied in laboratory experiments, molecular dyna...
International audienceThe shear strength of dense granular flows is generally described by an effect...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
Rheological properties of dense flows of hard particles are singular as one approaches the jamming t...
International audienceRecent years have seen significant progress in our understanding of the rheolo...
We use numerical simulations to study the effect of particle friction on suspension flows of non-Bro...
Flows of hard granular materials depend strongly on the interparticle friction coefficient mu(p) and...
12 pages, 9 figs. Réf Journal: Phys. Rev. E 91, 012203 (2015)International audienceWe use large sca...
We investigate in this article the macroscopic behavior of sheared suspensions of spherical particle...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
A granular material is a collection of discrete, solid particles of macroscopic size dispersed in an...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceHysteresis is a major feature of the solid-liquid transition in granular mater...
Rapid granular flows and particle-laden flows were studied in laboratory experiments, molecular dyna...
International audienceThe shear strength of dense granular flows is generally described by an effect...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...