In this work, we report some theoretical results on granular gases consisting of frictionless 3D rods with low energy dissipation. We performed simulations on the temporal evolution of soft spherocylinders, using a molecular dynamics algorithm implemented on GPU architecture. A homogeneous cooling state for rods, where the time dependence of the system’s intensive variables occurs only through a global granular temperature, has been identified. We have found a homogeneous cooling process, which is in excellent agreement with Haff’s law, when using an adequate rescaling time τ(ξ)τ(ξ), the value of which depends on the particle elongation ξξ and the restitution coefficient. It was further found that scaled particle velocity distributions rema...
Magnetic forces are used to heat up thousands of spherical particles under low-gravity. This long ra...
We study the dynamical behavior of a freely evolving granular gas, where the particles undergo inela...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
In this work, we report some theoretical results on granular gases consisting of frictionless 3D rod...
We investigate freely cooling systems of rough spheres in two and three dimensions. Simulations usin...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
Granular gases are a most peculiar state, superficially similar to molecular gases: They are loose e...
Aim of this theses is to elucidate the role of rotational degrees of freedom in a system of freely c...
We study the stability, the clustering and the phase-diagram of free cooling granular gases. The sys...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
We study the stability, the clustering and the phase-diagram of free cooling granular gases. The sys...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
We study the inhomogeneous clustered regime of a freely cooling granular gas of rough particles in t...
Some years ago, Harth et al. experimentally explored the steady state dynamics of a heated granular ...
The study of a freely evolving granular mixture using particle simulations presents the inherent lim...
Magnetic forces are used to heat up thousands of spherical particles under low-gravity. This long ra...
We study the dynamical behavior of a freely evolving granular gas, where the particles undergo inela...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
In this work, we report some theoretical results on granular gases consisting of frictionless 3D rod...
We investigate freely cooling systems of rough spheres in two and three dimensions. Simulations usin...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
Granular gases are a most peculiar state, superficially similar to molecular gases: They are loose e...
Aim of this theses is to elucidate the role of rotational degrees of freedom in a system of freely c...
We study the stability, the clustering and the phase-diagram of free cooling granular gases. The sys...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
We study the stability, the clustering and the phase-diagram of free cooling granular gases. The sys...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
We study the inhomogeneous clustered regime of a freely cooling granular gas of rough particles in t...
Some years ago, Harth et al. experimentally explored the steady state dynamics of a heated granular ...
The study of a freely evolving granular mixture using particle simulations presents the inherent lim...
Magnetic forces are used to heat up thousands of spherical particles under low-gravity. This long ra...
We study the dynamical behavior of a freely evolving granular gas, where the particles undergo inela...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...