We study the properties of a one-dimensional ~1D! granular gas consisting of N hard rods on a line of length L ~with periodic boundary conditions!. The particles collide inelastically and are fluidized by a heat bath at temperature Tb and viscosity g. The analysis is supported by molecular dynamics simulations. The average properties of the system are first discussed, focusing on the relations between granular temperature Tg5m^v 2 &, kinetic pressure, and density r5N/L. Thereafter, we consider the fluctuations around the average behavior obtaining a slightly non-Gaussian behavior of the velocity distributions and a spatially correlated velocity field; the density field displays clustering: this is reflected in the structure factor which has a pea...
Long-range spatial correlations in the velocity and energy fields of a granular fluid are discussed ...
We present a study of a one-dimensional granular gas of point-like particles not subject to gravity ...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
We study the properties of a one-dimensional ~1D! granular gas consisting of N hard rods on a line o...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
Abstract. We study a one-dimensional system of inelastic hard particles driven by thermal walls. For...
We study a one-dimensional fluid of hard rods interacting with each other via binary inelastic colli...
The free evolution of inelastic particles in one dimension is studied by means of Molecular Dynamics...
In this thesis we report experimental and simulation study of granular gases. As a non-equilibrium s...
A recently introduced model describing—on a 1d lattice—the velocity field of a granular fluid is dis...
The free evolution of inelastic particles in one dimension is studied by means of Molecular Dynamics...
A freely cooling granular gas with a velocity-dependent restitution coefficient is studied in one di...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
We investigate a lattice model representing a granular gas in a thin channel. We deduce the hydrodyn...
We present molecular dynamics simulations of mono- or bidisperse inelastic granular gases driven by ...
Long-range spatial correlations in the velocity and energy fields of a granular fluid are discussed ...
We present a study of a one-dimensional granular gas of point-like particles not subject to gravity ...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
We study the properties of a one-dimensional ~1D! granular gas consisting of N hard rods on a line o...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
Abstract. We study a one-dimensional system of inelastic hard particles driven by thermal walls. For...
We study a one-dimensional fluid of hard rods interacting with each other via binary inelastic colli...
The free evolution of inelastic particles in one dimension is studied by means of Molecular Dynamics...
In this thesis we report experimental and simulation study of granular gases. As a non-equilibrium s...
A recently introduced model describing—on a 1d lattice—the velocity field of a granular fluid is dis...
The free evolution of inelastic particles in one dimension is studied by means of Molecular Dynamics...
A freely cooling granular gas with a velocity-dependent restitution coefficient is studied in one di...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
We investigate a lattice model representing a granular gas in a thin channel. We deduce the hydrodyn...
We present molecular dynamics simulations of mono- or bidisperse inelastic granular gases driven by ...
Long-range spatial correlations in the velocity and energy fields of a granular fluid are discussed ...
We present a study of a one-dimensional granular gas of point-like particles not subject to gravity ...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...