Zobrazeno 1 - 10
of 46
pro vyhledávání: '"A. Ya. Korol'chenko"'
Autor:
T. D. Hoang, A. Ya. Korol’Chenko
Publikováno v:
ПОЖАРОВЗРЫВОБЕЗОПАСНОСТЬ. 22:69-74
Autor:
S. G. Tsarichenko, A. V. Trunev, A. A. Zaitzev, A. Ya. Korol'chenko, Yu. N. Shebeko, R. R. Ionaitis, V.Yu. Navzenya, S. N. Papkov
Publikováno v:
Combustion and Flame. 107:45-52
Flame propagation has been investigated experimentally in mixtures of H 2 and air in a tube with a moving water film on the tube's walls. Significant differences in flame propagation with and without the moving water film are revealed. For mixtures w
Publikováno v:
Fire Science and Technology. 16:29-34
The prevention of fire accidents in storage and processing enterprises may be provided by quick detection of fire locations in vegetable raw materials storehouses. It is reached by optimization of location scheme for temperature detectors in vegetabl
Autor:
S. G. Tsarichenko, Yu. N. Shebeko, A. V. Trunev, S. N. Papkov, A. A. Zaitzev, V.Yu. Navzenya, A. Ya. Korol'chenko
Publikováno v:
Combustion and Flame. 102:427-437
Burning velocities and flammability limits of gaseous mixtures of combustible gas (hydrogen and methane), oxidizer (oxygen and air), and diluent (nitrogen, argon, helium, carbon dioxide, steam, water aerosol formed by evaporation of superheated water
Autor:
O. A. Simonov, V.A. Kolosov, V. L. Malkin, I. M. Smolin, A. Ya. Korol'chenko, A. N. Borodkin, Yu. N. Shebeko, L. V. Gurinovich, A. P. Shevchuk, E.V. Smirnov, S. A. Popov
Publikováno v:
Journal of Loss Prevention in the Process Industries. 8:163-168
Results of experimental and theoretical investigations of fire and explosion hazards of liquefied petroleum gas (LPG) storage vessels are presented. The evaporation intensity from LPG pools and the thermal radiation intensity distribution on the surf
Autor:
R. R. Ionaitls, A. A. Zaitzev, S. N. Papkov, S. G. Tsarichenko, A. Ya. Korol'chenko, V.Yu. Navzenya, A. V. Trunev, Yu. N. Shebeko
Publikováno v:
Fire Science and Technology. 15:29-36
Publikováno v:
Combustion, Explosion, and Shock Waves. 31:14-19
Large-scale experiments are reported on the burning of hydrogen-air mixtures in an apparatus having a reaction vessel of volume 20 m3. A fast-burning mixture (30% hydrogen in air) shows a reduction in the pressure rise rate and in the maximum pressur
Autor:
S. N. Papkov, V. Yu. Navtsenya, A. A. Zaitsev, Yu. N. Shebeko, A. Ya. Korol'chenko, A. V. Trunev
Publikováno v:
Combustion, Explosion, and Shock Waves. 31:148-152
The influence of the aerosol formed in the fast evaporation of superheated water at 150°C on the combustion of a methane-air mixture in a near-spherical closed vessel (volume 20 dm3) is investigated experimentally. The concentrational limits of flam
Publikováno v:
Fire Science and Technology. 15:37-45
A simple method for an Individual and social risk assessment for liquefied petroleum gases (LPG) storages is proposed. This method is based on a simple event tree consideration and a rather detalled account of impact factors (thermal radiation intens
Publikováno v:
Combustion, Explosion, and Shock Waves. 30:183-188
The experimental values of the flammability limits in hydrogen-oxygen-inert diluent (helium argon, carbon dioxide, steam) mixtures at temperatures up to 523 K and pressures up to 2 MPa as well as of the burning velocities of H2−O2−N2 mixtures at