Zobrazeno 1 - 10
of 22
pro vyhledávání: '"V. V. Gogosov"'
Publikováno v:
Fluid Dynamics. 29:325-333
The nonstationary process of development of weakly conducting electrohydrodynamic flow in the channel of an EHD pump with plane permeable electrodes, between which a potential difference is created from an external source, is considered in the hydrau
Publikováno v:
Fluid Dynamics. 23:101-106
The propagation of small perturbations in raulticomponent disperse media consisting of an uncharged dispersion fluid, positive and negative ions and charged particles or droplets of another fluid is investigated. When weak waves pass through emulsion
Publikováno v:
IEEE Transactions on Magnetics. 16:301-308
Autor:
V. V. Gogosov, I. N. Shchelchkova
Publikováno v:
Fluid Dynamics. 9:741-753
Boundary conditions are calculated for the concentrations, velocities, and temperatures of the components of a partially ionized plasma at the electrodes and at the nonconducting walls bounding the plasma. Account is taken of the preelectrode drop in
Publikováno v:
Fluid Dynamics. 19:956-963
The problem is considered of the passage of a direct current through a solution of a weak electrolyte in a two-dimensional cell. Allowance is made for the electrochemical reactions of dissociation and reconbination which take place in the electrolyte
Publikováno v:
Journal of Applied Mathematics and Mechanics. 48:280-286
The hydrodynamics of the interface separating two media in contact, namely the liquid-liquid and liquid-gas interface, is investigated. The interface is modelled by a strong shock surface, with sources of mass, momentum and energy /1/. The influence
Autor:
I. N. Shchelchkova, V. V. Gogosov
Publikováno v:
Fluid Dynamics. 11:972-975
Examples of boundary conditions in certain particular cases are considered. The conditions proposed in [1, 2] can be used for any plasma component The boundary conditions for the same wall will generally be distinct for each of the components.
Publikováno v:
Acta Astronautica. 7:489-497
Various models are constructed to describe magnetic fluids. A system of equations governing the behaviour of a magnetizable medium in electromagnetic fields is written. The medium is assumed to consist of several phases and components, each one havin
Publikováno v:
Fluid Dynamics. 18:923-930
Publikováno v:
Journal of Applied Mathematics and Mechanics. 44:204-210
The motion of fluid containing gas bubbles or incompressible particles in an electric field is considered. A new model of disperse medium in which a separate equation of motion is devised for each phase, with the presence of other phases taken into a