7 papers
Investigation of transfer coefficients for many-component dense systems of neutral and charged hard spheres
A. E. Kobryn, M. V. Tokarchuk, Y. A. Humenyuk
In present work a calculation of transfer coefficients for many-component dense gases for charged and non-charged hard spheres is carried out using the Enskog-Landau kinetic equati…
Transport equations of a consistent description of the kinetics and hydrodynamics of dense quantum systems. I: General approach within the frame of nonequilibrium thermo field dynamics
M. V. Tokarchuk, A. E. Kobryn
We present basic equations of nonequilibrium thermo field dynamics of dense quantum systems. A formulation of nonequilibrium thermo field dynamics has been performed using the none…
A consistent description of kinetics and hydrodynamics of systems of interacting particles by means of the nonequilibrium statistical operator method
M. V. Tokarchuk, I. P. Omelyan, A. E. Kobryn
A statistical approach to a self-consistent description of kinetic and hydrodynamic processes in systems of interacting particles is formulated on the basis of the nonequilibrium s…
Normal solution and transport coefficients to the Enskog-Landau kinetic equation for a two-component system of charged hard spheres. The Chapman-Enskog method
A. E. Kobryn, I. P. Omelyan, M. V. Tokarchuk
An Enskog-Landau kinetic equation for a many-component system of charged hard spheres is proposed. It has been obtained from the Liouville equation with modified boundary condition…
Thermo field hydrodynamic and kinetic equations of dense quantum nuclear systems
M. V. Tokarchuk, T. Arimitsu, A. E. Kobryn
Basic equations of nonequilibrium thermo field dynamics of dense quantum systems are presented. A formulation of nonequilibrium thermo field dynamics has been performed using the n…
Normal solution to the Enskog-Landau kinetic equation. Boundary conditions method
A. E. Kobryn, I. P. Omelyan, M. V. Tokarchuk
Nonstationary and nonequilibrium processes are considered on the basis of an Enskog-Landau kinetic equation using a boundary conditions method. A nonstationary solution of this equ…