The stochastic properties of the total internal energy of a dilute granular gas in the steady uniform shear flow state are investigated. A recent theory formulated for fluctuations about the homogeneous cooling state is extended by analogy with molecular systems. The theoretical predictions are compared with molecular dynamics simulation results. Good agreement is found in the limit of weak inelasticity, while systematic and relevant discrepancies are observed when the inelasticity increases. The origin of this behavior is discussed
peer reviewedA recently introduced model describing—on a 1d lattice—the velocity field of a granular...
The local cooling rates of the components of a vibrated binary granular mixture in a steady state ar...
12 pages, 4 figure http://www.cecam.frIt is known that a finite-size homogeneous granular fluid deve...
A numerical molecular dynamics experiment measuring the two-time correlation function of the transve...
Starting from the hierarchy of equations for microscopic densities in phase space, a general theory ...
Hydrodynamic equations are used to identify the final state reached by a freely evolving granular ga...
Abstract. We investigate the behavior of energy fluctuations in several models of granular gases mai...
We investigate the behavior of energy fluctuations in several models of granular gases maintained i...
The self-diffusion coefficient of a granular gas in the homogeneous cooling state is analyzed near t...
The total energy fluctuations of a low-density granular gas in the homogeneous cooling state near th...
13 pages, 10 figuresWe investigate the behavior of energy fluctuations in several models of granular...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
Using Newtonian molecular dynamics we study a gas of inelastic hard disks subject,to shear between t...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
The shear viscosity in the dilute regime of a model for confined granular matter is studied by simul...
peer reviewedA recently introduced model describing—on a 1d lattice—the velocity field of a granular...
The local cooling rates of the components of a vibrated binary granular mixture in a steady state ar...
12 pages, 4 figure http://www.cecam.frIt is known that a finite-size homogeneous granular fluid deve...
A numerical molecular dynamics experiment measuring the two-time correlation function of the transve...
Starting from the hierarchy of equations for microscopic densities in phase space, a general theory ...
Hydrodynamic equations are used to identify the final state reached by a freely evolving granular ga...
Abstract. We investigate the behavior of energy fluctuations in several models of granular gases mai...
We investigate the behavior of energy fluctuations in several models of granular gases maintained i...
The self-diffusion coefficient of a granular gas in the homogeneous cooling state is analyzed near t...
The total energy fluctuations of a low-density granular gas in the homogeneous cooling state near th...
13 pages, 10 figuresWe investigate the behavior of energy fluctuations in several models of granular...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
Using Newtonian molecular dynamics we study a gas of inelastic hard disks subject,to shear between t...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
The shear viscosity in the dilute regime of a model for confined granular matter is studied by simul...
peer reviewedA recently introduced model describing—on a 1d lattice—the velocity field of a granular...
The local cooling rates of the components of a vibrated binary granular mixture in a steady state ar...
12 pages, 4 figure http://www.cecam.frIt is known that a finite-size homogeneous granular fluid deve...