We report on the scaling between the lift force and the velocity lag experienced by a single particle of different size in a monodisperse dense granular chute flow. The similarity of this scaling to the Saffman lift force in (micro-) fluids, suggests an inertial origin for the lift force responsible for segregation of (isolated, large) intruders in dense granular flows. We also observe an anisotropic pressure field surrounding the particle, which potentially lies at the origin of the velocity lag. These findings are relevant for modeling and theoretical predictions of particle-size segregation. At the same time, the suggested interplay between polydispersity and inertial effects in dense granular flows with stress and strain gradients, impl...
When granular media which have different size, density, shape or even frictional properties flow the...
International audienceIn order to better understand the mechanism governing segregation in granular ...
When a granular mixture involving grains of different sizes is shaken, sheared, mixed, or left to fl...
We report on the scaling between the lift force and the velocity lag experienced by a single particl...
We report on the scaling between the lift force and the velocity lag experienced by a single particl...
International audienceIn order to better understand the mechanism governing segregation in granular ...
International audienceWe report on the discovery, using numerical simulations, of a segregation patt...
Particle size segregation is ubiquitous in granular systems with differently sized constituents but ...
Modeling of particle-size segregation in dense granular flows could benefit from a better understand...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particle size segregation is ubiquitous in granular systems with differently sized constituents but ...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particles of differing sizes are notoriously prone to segregation in shear driven flows under the ac...
University of Minnesota Ph.D. dissertation. June 2011. Major: Civil Engineering. Advisor: Kimberly M...
When granular media which have different size, density, shape or even frictional properties flow the...
International audienceIn order to better understand the mechanism governing segregation in granular ...
When a granular mixture involving grains of different sizes is shaken, sheared, mixed, or left to fl...
We report on the scaling between the lift force and the velocity lag experienced by a single particl...
We report on the scaling between the lift force and the velocity lag experienced by a single particl...
International audienceIn order to better understand the mechanism governing segregation in granular ...
International audienceWe report on the discovery, using numerical simulations, of a segregation patt...
Particle size segregation is ubiquitous in granular systems with differently sized constituents but ...
Modeling of particle-size segregation in dense granular flows could benefit from a better understand...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particle size segregation is ubiquitous in granular systems with differently sized constituents but ...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particle segregation in geophysical and industrial granular flows is typically driven by gravity and...
Particles of differing sizes are notoriously prone to segregation in shear driven flows under the ac...
University of Minnesota Ph.D. dissertation. June 2011. Major: Civil Engineering. Advisor: Kimberly M...
When granular media which have different size, density, shape or even frictional properties flow the...
International audienceIn order to better understand the mechanism governing segregation in granular ...
When a granular mixture involving grains of different sizes is shaken, sheared, mixed, or left to fl...