Article information

1998 , Volume 3, ¹ 4, p.13-23

Verzhbitskaya I.S., Itskova P.G., Lukyanov A.T.

Mode stability of the catalytic oxidation of a gaseous mixture (two-phase process model)

A two-dimensional two-phase model of heat and mass transfer under the oxidation of a gaseous mixture in a cylindrical continuous reactor with a fixed-base layer of the catalyst is suggested, allowing for the radial distribution inhomogeneity of the layer porosity. The dynamic behavior of a system with an exothermic reaction is studied approximately analytically and numerically on the basis of the zero-dimension analogue of this model. The equations of bifurcational diagrams and parametric equations of the non-uniqueness and neutral stability boundaries on the plane of the effective temperature - effective concentration have been obtained. The effect of flow-catalyst mass-transfer coefficient on the domains with different number and stability of stationary regimes has been found and unique and non-unique steady and oscillatory oxidation regimes have been numerically implemented. The results obtained are in good agreement with the earlier data on the catalytic oxidations tability of a pseudohomogeneous model and the published solutions of unidimensional heterogeneous problems.

[full text] Classificator Msc2000:
*80A20 Heat and mass transfer, heat flow
92E20 Classical flows, reactions, etc.

Keywords: heterogeneous model, catalytic oxidation, exothermic reaction

Author(s):
Verzhbitskaya I.S.
Address: 480078, Kazakhstan, Almatu
Phone Office: (3272)674871

Itskova P.G.
Address: 480078, Kazakhstan, Almatu

Lukyanov A. Timofeevich
Professor
Address: 480078, Kazakhstan, Almatu


Bibliography link:
Verzhbitskaya I.S., Itskova P.G., Lukyanov A.T. Mode stability of the catalytic oxidation of a gaseous mixture (two-phase process model) // Computational technologies. 1998. V. 3. ¹ 4. P. 13-23
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