AbstractWe propose a fast spectral method for solving the generalized Enskog equation for dense gases. For elastic collisions, the method solves the Enskog collision operator with a computational cost of O(Md−1NdlogN), where d is the dimension of the velocity space, and Md−1 and Nd are the number of solid angle and velocity space discretizations, respectively. For inelastic collisions, the cost is N times higher. The accuracy of this fast spectral method is assessed by comparing our numerical results with analytical solutions of the spatially-homogeneous relaxation of heated granular gases. We also compare our results for force-driven Poiseuille flow and Fourier flow with those from molecular dynamics and Monte Carlo simulations. Although ...
This dissertation is dedicated to the mathematical and numerical study of a class of collisional kin...
Normal shock profiles a dense hard sphere gas are obtained by solving numerically the Enskog kinetic...
It is shown that the Boltzmann equation for smooth inelastic hard disks or spheres admits a solution...
We propose a fast spectral method for solving the generalized Enskog equation for dense gases. For e...
AbstractWe propose a fast spectral method for solving the generalized Enskog equation for dense gase...
A fast spectral method is proposed for solving the generalized Enskog equation for dense gases. For ...
When the average intermolecular distance is comparable to the size of gas molecules, the Boltzmann e...
AbstractNormal shock profiles in a dense hard sphere gas are obtained by solving numerically the Ens...
The Enskog-Boltzmann equation for a homogeneous freely evolving system of smooth hard disks collidin...
The Boltzmann equation describes the dynamics of rarefied gas flows, but the multidimensional nature...
The hydrodynamic equation governing the homogeneous time evolution of the temperature in a model of ...
Although the fast spectral method has been established for solving the Boltzmann equation for single...
A kinetic model is proposed for the nonequilibrium flow of dense gases composed of hard sphere molec...
The Navier-Stokes transport coefficients for a model of a confined quasi-two-dimensional granular ga...
The density of a moderately dense gas evolving in a vacuum is given by the solution of an Enskog equ...
This dissertation is dedicated to the mathematical and numerical study of a class of collisional kin...
Normal shock profiles a dense hard sphere gas are obtained by solving numerically the Enskog kinetic...
It is shown that the Boltzmann equation for smooth inelastic hard disks or spheres admits a solution...
We propose a fast spectral method for solving the generalized Enskog equation for dense gases. For e...
AbstractWe propose a fast spectral method for solving the generalized Enskog equation for dense gase...
A fast spectral method is proposed for solving the generalized Enskog equation for dense gases. For ...
When the average intermolecular distance is comparable to the size of gas molecules, the Boltzmann e...
AbstractNormal shock profiles in a dense hard sphere gas are obtained by solving numerically the Ens...
The Enskog-Boltzmann equation for a homogeneous freely evolving system of smooth hard disks collidin...
The Boltzmann equation describes the dynamics of rarefied gas flows, but the multidimensional nature...
The hydrodynamic equation governing the homogeneous time evolution of the temperature in a model of ...
Although the fast spectral method has been established for solving the Boltzmann equation for single...
A kinetic model is proposed for the nonequilibrium flow of dense gases composed of hard sphere molec...
The Navier-Stokes transport coefficients for a model of a confined quasi-two-dimensional granular ga...
The density of a moderately dense gas evolving in a vacuum is given by the solution of an Enskog equ...
This dissertation is dedicated to the mathematical and numerical study of a class of collisional kin...
Normal shock profiles a dense hard sphere gas are obtained by solving numerically the Enskog kinetic...
It is shown that the Boltzmann equation for smooth inelastic hard disks or spheres admits a solution...