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Catalytical ignition of deuterium – carbon monoxide – air mixtures over metallic rhodium surface at pressures of 1–2 atm
Troshin K., Rubtsov N., Chernysh V., Tsvetkov G., Shamshin I., Izmaylova Y., Kalinin A., Leontiev A., Rodionov A.
Numerical simulation of supersonic turbulent combustion of hydrogen in a stream of hot humid air
Nikonov А., Kharchenko N.
On gas-dynamic similarity of high-pressure hydrogen release into air
Kiverin A., Smygalina A.
Laser Ignition of Microparticles of Low-Metamorphosed Coal in the Size Range 0.4–33 µM
Aduev B., Nurmukhametov D., Nelyubina N., Liskov I., Ismagilov Z.
Features of Ignition of Mixtures of Hydrogen With Hydrocarbons (C2, C3, C5) Over Rhodium and Palladium at Pressures of 1–2 atm
Troshin K., Rubtsov N., Tsvetkov G., Chernysh V., Shamshin I.
The effect of aluminum in its mixtures with ammonium nitrate on the ignition of burning and its transition to convective burning regime
Khrapovskiy V., Khudaverdiev V., Sulimov A., Komissarov P., Basakina S.
Ignition of a gasless mixture array by a combustion wave
Aldushin A., Krishenik P., Rogachev S.
On the Mechanism of Combustion Propagation in Porous Nanothermites
Kirilenko V., Dolgoborodov A., Brazhnikov M., Kuskov M.
Combustion regimes of hydrogen at its direct injection into the internal combustion engine chamber
Smygalina A., Kiverin A.
Catalytic ignition of deuterium–air mixtures over a metallic rhodium surface at pressures of 1–2 atm
Troshin K., Rubtsov N., Chernysh V., Tsvetkov G., Shamshin I., Izmaylova Y., Kalinin A., Leont’ev A., Rodionov A.
Experimental study of a stoichiometric propylene–oxygen–argon mixture ignition behind a reflected shock wave
Kozlov P., Kotov M., Gerasimov G., Levashov V., Bykova N., Zabelinskii I.
The role of third-body collision efficiency in autoignition of hydrogen–air mixtures
Tereza A., Agafonov G., Anderzhanov E., Betev A., Medvedev S., Mikhalkin V., Khomik S., Cherepanova T.
Features of the inhibition of hydrogen–air mixtures by propylene additive
Belyaev A., Ermolaev B.
Mathematical Model of the Ignition of a Gel Fuel Particle in a High-Temperature Air Medium
Glushkov D., Paushkina K., Pleshko A.
Remote detection of emergency emissions and gas leaks
Rodionov I., Gomorev M., Rodionova I., Rodionov A., Shapovalov V., Shestakov D., Golubkov M.
Ignition Limits of Hydrogen–Methane–Air Mixtures Over Metallic Rhodium at a Pressure of up to 2 atm
Troshin K., Rubtsov N., Tsvetkov G., Chernysh V., Shamshin I.
Ignition of anthracite by a laser pulse
Aduyev B., Nurmukhametov D., Liskov I.
Numerical Simulation of the Effect of Additives on Autoignition of Lean Hydrogen–Air Mixtures
Tereza A., Agafonov G., Anderzhanov E., Betev A., Medvedev S., Khomik S., Cherepanova T.
Adaptation of the Kinetical Scheme to Ethylene Combustion Conditions at Temperatures Above 1200 K
Filimonova E., Dobrovolskaya A.
Erratum to: "Collision efficiency in autoignition of hydrogen–air mixtures" (Russian Journal of Physical Chemistry B: Focus on Physics. 2024. V. 43. № 7. P. 73–82; DOI: 10.31857/S0207401X24070071)
Tereza A., Agafonov G., Anderzhanov E., Betev A., Medvedev S., Mikhalkin V., Khomik S., Cherepanova T.
Ignition of Coal Microparticles by Laser Pulses of The Second Harmonic of a Ndodymium Laser in the Q-Switched Regime
Aduev B., Nurmukhametov D., Kraft Y., Ismagilov Z.
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