Using the hydrodynamic description and molecular dynamics simulations, the steady state of a fluidized granular system in the presence of gravity is studied. For an open system, the density profile exhibits a maximum, while the temperature profile goes through a minimum at high altitude, beyond that the temperature increases with the height. The existence of the minimum is explained by the hydrodynamic equations if the presence of a collisionless boundary layer is taken into account. The energy dissipated by interparticle collisions is also computed. A good agreement is found between theory and simulation. The relationship with previous works is discussed
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We study fluidized granular gases in a stationary state determined by the balance between external d...
Granular media, fluidized by a vibrating wall, is studied in the high frequency (omega -> infinity) ...
The steady state of a fluidized granular system confined between a vibrating wall and a reflecting o...
The transport coefficient coupling heat flux and density gradient in a granular gas is measured by t...
The hydrodynamic state of an impurity immersed in a low density granular gas is analyzed. Explicit e...
The present work is concerned with the mathematical modelling of a bed of granular material in a gra...
The steady state of a vibrated granular gas confined by a movable piston on top is discussed. Partic...
The difference of temperatures between an impurity and the surrounding gas in an open vibrated granu...
The leading order "temperature" of a dense two-dimensional granular material fluidized by external v...
Granular media, fluidized by a vibrating wall, is studied in the limit of high frequency. It is show...
The present thesis is dedicated to the experimental and simulation study of vibro-fluidized granular...
Abstract We study, via hydrodynamic equations, the granular temperature proÿle of a granular uid und...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
AbstractIn this note, we propose a formal argument identifying the hydrodynamic limit of a Fokker-Pl...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We study fluidized granular gases in a stationary state determined by the balance between external d...
Granular media, fluidized by a vibrating wall, is studied in the high frequency (omega -> infinity) ...
The steady state of a fluidized granular system confined between a vibrating wall and a reflecting o...
The transport coefficient coupling heat flux and density gradient in a granular gas is measured by t...
The hydrodynamic state of an impurity immersed in a low density granular gas is analyzed. Explicit e...
The present work is concerned with the mathematical modelling of a bed of granular material in a gra...
The steady state of a vibrated granular gas confined by a movable piston on top is discussed. Partic...
The difference of temperatures between an impurity and the surrounding gas in an open vibrated granu...
The leading order "temperature" of a dense two-dimensional granular material fluidized by external v...
Granular media, fluidized by a vibrating wall, is studied in the limit of high frequency. It is show...
The present thesis is dedicated to the experimental and simulation study of vibro-fluidized granular...
Abstract We study, via hydrodynamic equations, the granular temperature proÿle of a granular uid und...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
AbstractIn this note, we propose a formal argument identifying the hydrodynamic limit of a Fokker-Pl...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We study fluidized granular gases in a stationary state determined by the balance between external d...
Granular media, fluidized by a vibrating wall, is studied in the high frequency (omega -> infinity) ...