Zobrazeno 1 - 10
of 22
pro vyhledávání: '"L. K. Tsabek"'
Autor:
L. K. Tsabek
Publikováno v:
Journal of Engineering Physics. 28:771-774
The invariant solutions of the equations of sorption dynamics are obtained in the externally diffusive kinetic range for an s-type isotherm.
Autor:
V. M. Krasavin, V. D. Polugaevskii, Yu. I. Ageev, B. M. Gol'tsman, A. V. Ditman, A. S. Rivkin, B. I. Medvedev, A. G. Zen'kovskii, A. A. Mosyak, V. I. Yankov, V. I. Boyarchenko, Yu. A. Pustovoit, A. V. Fafurin, V. V. Kuz'min, A. A. Volkov, L. K. Tsabek, A. G. Gorelik
Publikováno v:
Journal of Engineering Physics. 32:598-604
Autor:
L. K. Tsabek
Publikováno v:
Journal of Engineering Physics. 26:260-263
A system of quasi-linear parabolic equations describing nonisothermal sorption kinetics in porous grains is analyzed. Model equations for sorption kinetics with complete derivatives are considered with regard for sorption heat release. The accuracy o
Autor:
L. K. Tsabek
Publikováno v:
Journal of Engineering Physics. 27:1041-1045
The accuracy is analyzed of the equations for a model for anisothermic sorption kinetics in porous granules.
Autor:
L. K. Tsabek
Publikováno v:
Journal of Engineering Physics. 26:477-481
The accuracy of different model equations of sorption dynamics in porous media is analyzed. Analytical solutions of the equations are obtained for a rectangular isotherm.
Autor:
L. K. Tsabek
Publikováno v:
Fluid Dynamics. 10:496-499
The numerical solutions of a system of quasilinear equations in partial derivatives, describing the motion of a nonisothermal multicomponent sorbable gas mixture (or mixture of liquids) through a porous saturated medium consisting of porous grains an
Autor:
L. K. Tsabek
Publikováno v:
Journal of Engineering Physics. 30:228-233
Solutions of the equations of multicomponent nonisothermal Sorption dynamics are analyzed. It is shown that inversion occurs when the mass-transfer coefficient of the weakly sorbed component is very low.
Autor:
L. K. Tsabek
Publikováno v:
Fluid Dynamics. 15:693-701
The equations of motion of a nonisothermal adsorbable mixture with enhanced values of the concentrations of the components in the case of infinitely large coefficients of heat and mass transfer reduce to a hyperbolic quasilinear system of equations.
Autor:
V. M. Kazanskii, L. S. Domorod, L. E. Evseeva, S. A. Tanaeva, V. N. Slesarenko, A. V. Kryanev, V. E. Raevskaya, V. K. Fardzinov, R. M. Sattarov, Sh. A. Ershin, U. K. Zhapbasbaev, I. D. Molyukov, K. I. Mukhanbetkaliev, L. N. Pavlov, Yu. I. Pavlova, L. K. Tsabek, V. G. Veresov, �. �. Rafales-Lamarka, A. S. Petrov, B. A. Lishanskii, V. I. Igonin, V. M. Khorol'skii, A. M. Makarov, V. R. Romanovskii
Publikováno v:
Journal of Engineering Physics. 35:876-883
Autor:
L. K. Tsabek
Publikováno v:
Fluid Dynamics. 9:199-204
Numerical methods are analyzed of solving the quasilinear system of partial differential equations describing the motion of a sorbed gas (liquid) mixture through a porous, saturated, nondeformable medium consisting of porous grains. Conditions are ob