Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulations at large shear rates and for differently soft, deformable particles. Particle stiffness sets a time-scale that can be used to scale the physical quantities; thus the dimensionless shear rate, i.e. the inertial number I (inversely proportional to pressure), can alternatively be expressed as inversely proportional to the square root of particle stiffness. Asymptotic scaling relations for the field variables pressure, shear stress and granular temperature are inferred from simulations in both fluid and solid regimes, corresponding to unjammed and jammed conditions. Then the limit cases are merged to unique constitutive relations that cover ...
Particulate systems like powders, soil or granular matter are discrete, disordered systems displayin...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
We use previous results from discrete element simulations of simple shear flows of rigid, identical ...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
The flow of frictionless granular particles is studied with stress-controlled discrete element model...
A granular material is a collection of discrete, solid particles of macroscopic size dispersed in an...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
Particulate systems like powders, soil or granular matter are discrete, disordered systems displayin...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
We use previous results from discrete element simulations of simple shear flows of rigid, identical ...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
Simple homogeneous shear flows of frictionless, deformable particles are studied by particle simulat...
The flow of frictionless granular particles is studied with stress-controlled discrete element model...
A granular material is a collection of discrete, solid particles of macroscopic size dispersed in an...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
This paper aims at extending the well-known critical state concept, associated with quasi-static con...
Particulate systems like powders, soil or granular matter are discrete, disordered systems displayin...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
We use previous results from discrete element simulations of simple shear flows of rigid, identical ...