In this work we present an extension of the well-known particle based stochastic rotation dynamics method for the simulation of hydrodynamics of granular gases. We use an effective local coefficient of restitution to render energy dissipation dependent on local macroscopic observables, while locally conserving density and momentum. We derive the granular Boltzmann equation and demonstrate that our model obeys linear granular hydrodynamic equations. Furthermore, we derive a formula for the kinematic viscosity of the model fluid in two dimensions. We present results from simulations with a software implementation for general purpose graphics cards, that we successfully test and benchmarked with analytical predictions for standard stochastic r...
In this thesis we report experimental and simulation study of granular gases. As a non-equilibrium s...
The physical mechanisms leading to the development of density inhomogeneities in a freely evolving l...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
In this work we present an extension of the well-known particle based stochastic rotation dynamics m...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
Summary Although all macroscopic grains are frictional, most of the theoretical studies of granular ...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
Abstract. The stochastic motion of an arbitrarily shaped rotor, free to rotate around a fixed axis a...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
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 ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
In this thesis we report experimental and simulation study of granular gases. As a non-equilibrium s...
The physical mechanisms leading to the development of density inhomogeneities in a freely evolving l...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...
In this work we present an extension of the well-known particle based stochastic rotation dynamics m...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
Summary Although all macroscopic grains are frictional, most of the theoretical studies of granular ...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
Abstract. The stochastic motion of an arbitrarily shaped rotor, free to rotate around a fixed axis a...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
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 ...
We address the problem of the so-called "granular gases," i.e., gases of massive particles in rapid ...
In this thesis we report experimental and simulation study of granular gases. As a non-equilibrium s...
The physical mechanisms leading to the development of density inhomogeneities in a freely evolving l...
textGranular materials often exhibit fluid-like behavior in the presence of an external forcing. Th...