This book addresses the study of the gaseous state of granular matter in the conditions of rapid flow caused by a violent and sustained excitation. In this regime, grains only touch each other during collisions and hence, kinetic theory is a very useful tool to study granular flows. The main difference with respect to ordinary or molecular fluids is that grains are macroscopic and so, their collisions are inelastic. Given the interest in the effects of collisional dissipation on granular media under rapid flow conditions, the emphasis of this book is on an idealized model (smooth inelastic hard spheres) that isolates this effect from other important properties of granular systems. In this simple model, the inelasticity of collisions is only...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
While there is not yet any general theory for granular materials, significant progress has been achi...
AbstractA kinetic model for a granular gas of particles inelastically scattering between themselves,...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
The kinetic theory of granular flow is a successful model for gas-solid flows. However, inelastic co...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
AbstractA kinetic model for a granular gas of particles inelastically scattering between themselves,...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
: The kinetic energy distribution function satisfying the Boltzmann equation is studied analytically...
It is well-recognized that granular media under rapid flow conditions can be modeled as a gas of har...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
While there is not yet any general theory for granular materials, significant progress has been achi...
AbstractA kinetic model for a granular gas of particles inelastically scattering between themselves,...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
The kinetic theory of granular flow is a successful model for gas-solid flows. However, inelastic co...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
AbstractA kinetic model for a granular gas of particles inelastically scattering between themselves,...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
: The kinetic energy distribution function satisfying the Boltzmann equation is studied analytically...
It is well-recognized that granular media under rapid flow conditions can be modeled as a gas of har...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...
Rapid granular flows are defined as flows in which the time scales for the particle interactions are...