It is well-recognized that granular media under rapid flow conditions can be modeled as a gas of hard spheres with inelastic collisions. At moderate densities, a fundamental basis for the determination of the granular hydrodynamics is provided by the Enskog kinetic equation conveniently adapted to account for inelastic collisions. A surprising result (compared to its molecular gas counterpart) for granular mixtures is the failure of the energy equipartition, even in homogeneous states. This means that the partial temperatures $T_i$ (measuring the mean kinetic energy of each species) are different to the (total) granular temperature $T$. The goal of this paper is to provide an overview on the effect of different partial temperatures on the t...
Polydisperse granular flow has been extensively studied using kinetic theory, where approximations, ...
The aim of this work is to explore the combined effect of polydispersity and roughness on the partia...
Two approaches exist to account for granular behavior. The thermal one considers the total entropy, ...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
Kinetic theory for particles of the same mass and the same granular temperature is well established....
The kinetic theory for particles of equal mass, density, and size is well established. However, kine...
Kinetic theories have been developed to describe the hydrodynamics of polydisperse granular flows un...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
Kinetic theories have been developed to describe the hydrodynamics of polydisperse granular flows un...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
Polydisperse granular flow has been extensively studied using kinetic theory, where approximations, ...
The hydrodynamic conservation equations and constitutive relations for a binary granular mixture com...
Polydisperse granular flow has been extensively studied using kinetic theory, where approximations, ...
The aim of this work is to explore the combined effect of polydispersity and roughness on the partia...
Two approaches exist to account for granular behavior. The thermal one considers the total entropy, ...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
Kinetic theory for particles of the same mass and the same granular temperature is well established....
The kinetic theory for particles of equal mass, density, and size is well established. However, kine...
Kinetic theories have been developed to describe the hydrodynamics of polydisperse granular flows un...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
Kinetic theories have been developed to describe the hydrodynamics of polydisperse granular flows un...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
We apply the extended kinetic theory (EKT) to the dense, simple shear flow of inelastic hard spheres...
Polydisperse granular flow has been extensively studied using kinetic theory, where approximations, ...
The hydrodynamic conservation equations and constitutive relations for a binary granular mixture com...
Polydisperse granular flow has been extensively studied using kinetic theory, where approximations, ...
The aim of this work is to explore the combined effect of polydispersity and roughness on the partia...
Two approaches exist to account for granular behavior. The thermal one considers the total entropy, ...