International audienceRelying on contact dynamics simulations, we study the statistical distribution of contact forces inside a confined packing of circular rigid disks with solid friction. We find the following: (1) The number of normal and tangential forces lower than their respective mean value decays as a power law. (2) The number of normal and tangential forces higher than their respective mean value decays exponentially. (3) The ratio of friction to normal force is uniformly distributed and is uncorrelated with normal force. (4) When normalized with respect to their mean values, these distributions are independent of sample size and particle size distribution
International audienceThanks to extensive numerical simulations of a simple two-dimensional model of...
The probability density functions (PDFs) of contact forces in anisotropic, cohesionless and friction...
We derive analytic expressions for force propagation in packings of frictionless discs with a narrow...
International audienceWith a new simulation method, involving viscous lubricating forces, we identif...
We numerically study the distribution P(f) of contact forces in frictionless bead packs, by averagin...
With a new simulation method, involving viscous lubricating forces, we identify the exact list of ac...
International audienceWe present the results of a systematic numerical investigation of force distri...
We numerically study the distribution P(f) of contact forces in frictionless bead packs, by averagin...
Granular materials such as sand have both liquid-like and solid-like properties similar to both liqu...
14 pages + 1 page, 3 figuresInternational audienceThe distribution P(F) of contact forces F in a hom...
Simulated granular packings with different particle friction coefficient μ are examined. The distrib...
The effect of friction on the quasi-static behavior of dense granular media is the subject of this w...
In an earlier paper, Ngan (Phys. Rev. E 68 (2003) 011301) proposed a statistical mechanics-based the...
In dense, static, polydisperse granular media under isotropic pressure, the probability density and ...
We compare the probability density functions of normal forces in dry and wet granular systems from 3...
International audienceThanks to extensive numerical simulations of a simple two-dimensional model of...
The probability density functions (PDFs) of contact forces in anisotropic, cohesionless and friction...
We derive analytic expressions for force propagation in packings of frictionless discs with a narrow...
International audienceWith a new simulation method, involving viscous lubricating forces, we identif...
We numerically study the distribution P(f) of contact forces in frictionless bead packs, by averagin...
With a new simulation method, involving viscous lubricating forces, we identify the exact list of ac...
International audienceWe present the results of a systematic numerical investigation of force distri...
We numerically study the distribution P(f) of contact forces in frictionless bead packs, by averagin...
Granular materials such as sand have both liquid-like and solid-like properties similar to both liqu...
14 pages + 1 page, 3 figuresInternational audienceThe distribution P(F) of contact forces F in a hom...
Simulated granular packings with different particle friction coefficient μ are examined. The distrib...
The effect of friction on the quasi-static behavior of dense granular media is the subject of this w...
In an earlier paper, Ngan (Phys. Rev. E 68 (2003) 011301) proposed a statistical mechanics-based the...
In dense, static, polydisperse granular media under isotropic pressure, the probability density and ...
We compare the probability density functions of normal forces in dry and wet granular systems from 3...
International audienceThanks to extensive numerical simulations of a simple two-dimensional model of...
The probability density functions (PDFs) of contact forces in anisotropic, cohesionless and friction...
We derive analytic expressions for force propagation in packings of frictionless discs with a narrow...