We study the homogeneous isotropic Boltzmann equation for an open system. For the case of a hard spheres gas, we look for nonequilibrium steady solutions in the presence of forcing and dissipation. Using the language of weak turbulence theory, we analyze the possibility of observing the Kolmogorov–Zakharov steady distributions, i.e. solutions characterized by constant fluxes of conserved quantities. We derive a differential approximation model and we find that the expected nonequilibrium steady solutions have always the form of warm cascades. We propose an analytical prediction for the relation between the forcing and dissipation and the thermodynamic quantities of the system. Specifically, we find that the temperature of the system is inde...
Texto completo: acesso restrito. p. 392–416In this work we study the dissipative dynamics of a syste...
A phenomenological turbulence model in which the energy spectrum obeys a nonlinear diffusion equatio...
We consider a non-interacting one-dimensional gas accelerated by a constant and uniform external fie...
We study the single-particle distributions of three-dimensional hard-sphere gas described by the Bol...
The authors prove existence and uniqueness of a Maxwellian, normalized equilibrium state for a dissi...
In this paper, we first define a deterministic particle model for heat conduction. It consists of a ...
A Hamiltonian-based model of many harmonically interacting massive particles that are subject to lin...
Stationary non equilibrium solutions to the Boltzmann equation, despite their relevance in applicati...
We consider the spatially homogeneous Boltzmann equation for inelastic hard spheres, in the framewor...
It is shown that the Boltzmann equation for smooth inelastic hard disks or spheres admits a solution...
International audienceWe show the existence of smooth stationary solutions for the inelastic Boltzma...
PACS. 81.05.Rm – Porous materials; granular materials. Abstract. – Within the framework of the homog...
We consider the problem of describing the dynamics of a test particle moving in a thermal bath using...
Abstract: In this paper, we first define a deterministic particle model for heat conduc-tion. It con...
Abstract: We study the Boltzmann equation for a space-homogeneous gas of inelastic hard spheres, wit...
Texto completo: acesso restrito. p. 392–416In this work we study the dissipative dynamics of a syste...
A phenomenological turbulence model in which the energy spectrum obeys a nonlinear diffusion equatio...
We consider a non-interacting one-dimensional gas accelerated by a constant and uniform external fie...
We study the single-particle distributions of three-dimensional hard-sphere gas described by the Bol...
The authors prove existence and uniqueness of a Maxwellian, normalized equilibrium state for a dissi...
In this paper, we first define a deterministic particle model for heat conduction. It consists of a ...
A Hamiltonian-based model of many harmonically interacting massive particles that are subject to lin...
Stationary non equilibrium solutions to the Boltzmann equation, despite their relevance in applicati...
We consider the spatially homogeneous Boltzmann equation for inelastic hard spheres, in the framewor...
It is shown that the Boltzmann equation for smooth inelastic hard disks or spheres admits a solution...
International audienceWe show the existence of smooth stationary solutions for the inelastic Boltzma...
PACS. 81.05.Rm – Porous materials; granular materials. Abstract. – Within the framework of the homog...
We consider the problem of describing the dynamics of a test particle moving in a thermal bath using...
Abstract: In this paper, we first define a deterministic particle model for heat conduc-tion. It con...
Abstract: We study the Boltzmann equation for a space-homogeneous gas of inelastic hard spheres, wit...
Texto completo: acesso restrito. p. 392–416In this work we study the dissipative dynamics of a syste...
A phenomenological turbulence model in which the energy spectrum obeys a nonlinear diffusion equatio...
We consider a non-interacting one-dimensional gas accelerated by a constant and uniform external fie...