Deflagration-to-detonation transition in highly reactive combustible mixtures MA Liberman, MF Ivanov, AD Kiverin, MS Kuznetsov, AA Chukalovsky, ... Acta Astronautica 67 (7-8), 688-701, 2010 | 288 | 2010 |
DDT in a smooth tube filled with a hydrogen–oxygen mixture M Kuznetsov, V Alekseev, I Matsukov, S Dorofeev Shock waves 14, 205-215, 2005 | 279 | 2005 |
Effect of scale on the onset of detonations SB Dorofeev, VP Sidorov, MS Kuznetsov, ID Matsukov, VI Alekseev Shock Waves 10 (2), 137-149, 2000 | 251 | 2000 |
Evaluation of limits for effective flame acceleration in hydrogen mixtures SB Dorofeev, MS Kuznetsov, VI Alekseev, AA Efimenko, W Breitung Journal of loss prevention in the process industries 14 (6), 583-589, 2001 | 223 | 2001 |
Flammability limits and laminar flame speed of hydrogen–air mixtures at sub-atmospheric pressures M Kuznetsov, S Kobelt, J Grune, T Jordan International journal of hydrogen energy 37 (22), 17580-17588, 2012 | 178 | 2012 |
An analysis of the hydrogen explosion in the Fukushima-Daiichi accident J Yanez, M Kuznetsov, A Souto-Iglesias International Journal of Hydrogen Energy 40 (25), 8261-8280, 2015 | 169 | 2015 |
DDT in Methane-Air Mixtures M Kuznetsov, G Ciccarelli, S Dorofeev, V Alekseev, THK Yu. Yankin Shock waves 12, 215-220, 2002 | 152* | 2002 |
DDT in Methane-Air Mixtures M Kuznetsov, G Ciccarelli, S Dorofeev, V Alekseev, THK Yu. Yankin Shock waves 12, 215-220, 2002 | 138 | 2002 |
DDT in Methane-Air Mixtures M Kuznetsov, G Ciccarelli, S Dorofeev, V Alekseev Shock waves 12, 215-220, 2002 | 138 | 2002 |
Medium-scale experiments on vented hydrogen deflagration M Kuznetsov, A Friedrich, G Stern, N Kotchourko, S Jallais, B L'Hostis Journal of Loss Prevention in the Process Industries 36, 416-428, 2015 | 129 | 2015 |
Influence of gas compression on flame acceleration in the early stage of burning in tubes DV V. AKKERMAN, M. KUZNETSOV, L.-E. ERIKSSON, C.K. LAW, V. BYCHKOV Combustion and Flame 160 (1), 97-111, 2013 | 125 | 2013 |
Experimental study of the preheat zone formation and deflagration to detonation transition M Kuznetsov, M Liberman, I Matsukov Combustion science and technology 182 (11-12), 1628-1644, 2010 | 120 | 2010 |
Formation of the preheated zone ahead of a propagating flame and the mechanism underlying the deflagration-to-detonation transition MA Liberman, M Kuznetsov, A Ivanov, I Matsukov Physics Letters A 373 (5), 501-510, 2009 | 120 | 2009 |
Laminar burning velocities of hydrogen-oxygen-steam mixtures at elevated temperatures and pressures M Kuznetsov, R Redlinger, W Breitung, J Grune, A Friedrich, N Ichikawa Proceedings of the Combustion Institute 33 (1), 895-903, 2011 | 98 | 2011 |
The structure and flame propagation regimes in turbulent hydrogen jets A Veser, M Kuznetsov, G Fast, A Friedrich, N Kotchourko, G Stern, ... International Journal of Hydrogen Energy 36 (3), 2351-2359, 2011 | 95 | 2011 |
Detonation propagation, decay, and reinitiation in nonuniform gaseous mixtures MS Kuznetsov, VI Alekseev, SB Dorofeev, ID Matsukov, JL Boccio Symposium (International) on Combustion 27 (2), 2241-2247, 1998 | 95 | 1998 |
Comparison of critical conditions for DDT in regular and irregular cellular detonation systems MS Kuznetsov, VI Alekseev, SB Dorofeev Shock Waves 10 (3), 217-223, 2000 | 91 | 2000 |
GASFLOW-MPI: A new 3-D parallel all-speed CFD code for turbulent dispersion and combustion simulations: Part I: Models, verification and validation J Xiao, W Breitung, M Kuznetsov, H Zhang, JR Travis, R Redlinger, ... international journal of hydrogen energy 42 (12), 8346-8368, 2017 | 85 | 2017 |
Numerical analysis of hydrogen release, dispersion and combustion in a tunnel with fuel cell vehicles using all-speed CFD code GASFLOW-MPI Y Li, J Xiao, H Zhang, W Breitung, J Travis, M Kuznetsov, T Jordan international journal of hydrogen energy 46 (23), 12474-12486, 2021 | 81 | 2021 |
Ignition and heat radiation of cryogenic hydrogen jets A Friedrich, W Breitung, G Stern, A Veser, M Kuznetsov, G Fast, ... International Journal of Hydrogen Energy 37 (22), 17589-17598, 2012 | 81 | 2012 |