Zobrazeno 1 - 10
of 80
pro vyhledávání: '"A. M. Savel'ev"'
Autor:
K. O. Aiyyzhy, E. V. Barmina, V. D. Kobtsev, D. N. Kozlov, S. A. Kostritsa, S. N. Orlov, A. M. Savel’ev, V. V. Smirnov, N. S. Titova, G. A. Shafeev
Publikováno v:
Combustion, Explosion, and Shock Waves. 59:167-179
Publikováno v:
Физика горения и взрыва. 59:3-24
Publikováno v:
Journal of Thermophysics and Heat Transfer. 36:894-906
Publikováno v:
Journal of Propulsion and Power. 38:771-782
Autor:
N. S. Titova, A. M. Savel’ev
Publikováno v:
Физика горения и взрыва. 57:65-78
Thermogravimetric analysis data were used to determine the activation energy E = 205.9 kJ/mol, the pre-exponential factor A = 2.275·10−15 m3/s, and the order of reaction with respect to the oxidizer $$m$$ = 1 for the oxidation of an aluminum dibor
Publikováno v:
Combustion, Explosion, and Shock Waves. 57:30-45
A model of nonstationary homogeneous nucleation of boron oxide vapor in chemically reacting gas mixtures is developed. The model is used to perform a numerical study of homogeneous nucleation of boron oxide vapor in Laval nozzles with different geome
Autor:
A. M. Savel’ev, Alexander S. Sharipov, Alexey V. Pelevkin, P. S. Kuleshov, B. I. Lukhovitskii, V. A. Savel’eva
Publikováno v:
Combustion, Explosion, and Shock Waves. 56:249-266
A reaction model is proposed for calculating the process of ignition of diborane mixtures with air. The model summarizes the previously developed kinetic models of oxidation of diborane, boron, as well as lower oxides and hydroxides of boron. A disti
Publikováno v:
NONEQUILIBRIUM PROCESSES: RECENT ACCOMPLISHMENTS.
A numerical study of ignition and combustion of jets of the simplest boranes - diborane B2H6 - in cocurrent supersonic airflow with the use of the developed detailed kinetic mechanism of diborane-air oxidation is carried out in the flat channel.
Publikováno v:
NONEQUILIBRIUM PROCESSES: RECENT ACCOMPLISHMENTS.
A model of unsteady homogeneous nucleation of boron oxide vapors in chemically reacting mixtures is proposed. The nucleation of condensation nuclei in the model is considered as a bimolecular reaction of boron oxide molecules capture by clusters of b
Publikováno v:
Combustion and Flame. 196:223-236
The model of formation and growth of stoichiometric (Al2O3)n clusters during the combustion of aluminized fuels has been developed. In this model, the thermodynamic properties of large clusters (n = 5–75) have been determined by matching the thermo