Experimental characterization of aircraft combustor soot: Microstructure, surface area, porosity and water adsorption OB Popovitcheva, NM Persiantseva, ME Trukhin, GB Rulev, NK Shonija, ... Physical Chemistry Chemical Physics 2 (19), 4421-4426, 2000 | 132 | 2000 |
On the influence of electronically excited oxygen molecules on combustion of hydrogen–oxygen mixture VV Smirnov, OM Stelmakh, VI Fabelinsky, DN Kozlov, AM Starik, ... Journal of Physics D: Applied Physics 41 (19), 192001, 2008 | 128 | 2008 |
On the influence of singlet oxygen molecules on the speed of flame propagation in methane–air mixture AM Starik, VE Kozlov, NS Titova Combustion and Flame 157 (2), 313-327, 2010 | 108 | 2010 |
Kinetics of detonation initiation in the supersonic flow of the H2+ O2 (air) mixture in O2 molecule excitation by resonance laser radiation AM Starik, NS Titova Kinetics and catalysis 44, 28-39, 2003 | 105 | 2003 |
Modeling of sulfur gases and chemiions in aircraft engines AM Starik, AM Savel'ev, NS Titova, U Schumann Aerospace Science and Technology 6 (1), 63-81, 2002 | 102 | 2002 |
Syngas oxidation mechanism AM Starik, NS Titova, AS Sharipov, VE Kozlov Combustion, Explosion, and Shock Waves 46, 491-506, 2010 | 90 | 2010 |
Comprehensive analysis of the effect of atomic and molecular metastable state excitation on air plasma composition behind strong shock waves AM Starik, NS Titova, IV Arsentiev Plasma Sources Science and Technology 19 (1), 015007, 2009 | 83 | 2009 |
Theoretical analysis of reaction kinetics with singlet oxygen molecules A Starik, A Sharipov Physical Chemistry Chemical Physics 13 (36), 16424-16436, 2011 | 79 | 2011 |
Physics and chemistry of the influence of excited molecules on combustion enhancement AM Starik, BI Loukhovitski, AS Sharipov, NS Titova Philosophical Transactions A 373 (2048), 20140341, 2015 | 63 | 2015 |
Modeling study of gas-turbine combustor emission AB Lebedev, AN Secundov, AM Starik, NS Titova, AM Schepin Proceedings of the Combustion Institute 32 (2), 2941-2947, 2009 | 63 | 2009 |
Numerical analysis of nanoaluminum combustion in steam AM Starik, PS Kuleshov, AS Sharipov, NS Titova, CJ Tsai Combustion and Flame 161 (6), 1659-1667, 2014 | 62 | 2014 |
Experimental study of combustion of composite fuel comprising n-decane and aluminum nanoparticles VV Smirnov, SA Kostritsa, VD Kobtsev, NS Titova, AM Starik Combustion and Flame 162 (10), 3554-3561, 2015 | 60 | 2015 |
Evolution of charged species in propane/air flames: mass-spectrometric analysis and modelling JM Rodrigues, A Agneray, X Jaffrezic, M Bellenoue, S Labuda, C Leys, ... Plasma Sources Science and Technology 16 (1), 161, 2006 | 59 | 2006 |
Specific Features of Ignition and Combustion of Composite Fuels Containing Aluminum Nanoparticles (Review) AM Starik, AM Savel’ev, NS Titova Combustion, Explosion, and Shock Waves 51 (2), 197–222, 2015 | 57 | 2015 |
Possibility of Initiation of Combustion of CH4–O2 (Air) Mixtures with Laser‐Induced Excitation of O2 Molecules AM Starik, NS Titova Combustion, Explosion and Shock Waves 40, 499-510, 2004 | 56 | 2004 |
Intensification of shock-induced combustion by electric-discharge-excited oxygen molecules: numerical study AM Starik, BI Loukhovitski, AS Sharipov, NS Titova Combustion Theory and Modelling 14 (5), 653-679, 2010 | 55 | 2010 |
Kinetics of Al + H2O Reaction: Theoretical Study A Sharipov, N Titova, A Starik The Journal of Physical Chemistry A 115 (17), 4476-4481, 2011 | 54 | 2011 |
Evaluation of prediction ability of detailed reaction mechanisms in the combustion performance in hydrogen/air supersonic flows LV Bezgin, VI Kopchenov, AS Sharipov, NS Titova, AM Starik Combustion Science and Technology 185 (1), 62-94, 2013 | 52 | 2013 |
The promotion of ignition in a supersonic H2–air mixing layer by laser-induced excitation of O2 molecules: Numerical study AM Starik, NS Titova, LV Bezgin, VI Kopchenov Combustion and flame 156 (8), 1641-1652, 2009 | 50 | 2009 |
Modeling study of combustion and pollutant formation in HCCI engine operating on hydrogen rich fuel blends VE Kozlov, IV Chechet, SG Matveev, NS Titova, AM Starik International Journal of Hydrogen Energy 41 (5), 3689-3700, 2016 | 49 | 2016 |