Hydrodynamics of driven granular gases
arXiv:cond-mat/0304149 · doi:10.1103/PhysRevE.68.031304
Abstract
Hydrodynamic equations for granular gases driven by the Fokker-Planck operator are derived. Transport coefficients appeared in Navier-Stokes order change from the values of a free cooling state to those of a steady state.
5 pages, 3 figures
References in corpus (7)
- A model for collisions in granular gases
- Transport coefficients of a heated granular gas
- Driven low density granular mixtures
- Transport coefficients of d-dimensional inelastic Maxwell models
- Kinetic Theory of a Dilute Gas System under Steady Heat Conduction
- Granular fluid thermostatted by a bath of elastic hard spheres
- Simulation for the oblique impact of a lattice system
Cited by in corpus (12)
- Phase Diagram of Vertically Shaken Granular Matter
- Transport properties for driven granular fluids in situations close to homogeneous steady states
- Mpemba effect in inertial suspensions
- Kinetic theory of shear thickening for a moderately dense gas-solid suspension: from discontinuous thickening to continuous thickening
- Theory of thermostatted inhomogeneous granular fluids: a self-consistent density functional description
- Transport coefficients for driven granular mixtures at low-density
- Enskog kinetic theory of rheology for a moderately dense inertial suspension
- Homogeneous states in driven granular mixtures: Enskog kinetic theory versus molecular dynamics simulations
- Local heat flux and energy loss in a 2D vibrated granular gas
- Granular Fluids with Solid Friction and Heating
- Navier-Stokes transport coefficients for driven inelastic Maxwell models
- Kinetic theory of discontinuous shear thickening for a dilute gas-solid suspension