1 - 16 |
Shapes of nonbuoyant round hydrocarbon-fueled laminar-jet diffusion flames in still Aalburg C, Diez FJ, Faeth GM, Sunderland PB, Urban DL, Yuan ZG |
17 - 23 |
Experimental study of merged flames from multifire sources in propane and wood crib burners Kamikawa D, Weng WG, Kagiya K, Fukuda Y, Mase R, Hasemi Y |
24 - 32 |
Influence of temperature on the distribution of gaseous products from pyrolyzing palm oil wastes Yan R, Yang HP, Chin T, Liang DT, Chen HP, Zheng CG |
33 - 51 |
Dynamics of an inverse diffusion flame and its role in polycyclic-aromatic-hydrocarbon and soot formation Katta VR, Blevins LG, Roquemore WM |
52 - 61 |
Dual-pump dual-broadband CARS for exhaust-gas temperature and CO2-O-2-N-2 mole-fraction measurements in model gas-turbine combustors Meyer TR, Roy S, Lucht RP, Gord JR |
62 - 71 |
Scalar dissipation rate at extinction and the effects of oxygen-enriched combustion Chen R, Axelbaum RL |
72 - 88 |
Experimental study of PAH formation in laminar counterflow CH4-N-2/O-2-N-2 and C3H8-N-2/O-2-N-2 nonpremixed flames Kitajima A, Hatanaka T, Takeuchi M, Torikai H, Miyadera T |
89 - 106 |
Numerical simulation of fuel droplet extinction due to forced convection Pope DN, Gogos G |
107 - 116 |
Determination of the adsorption and desorption parameters for ethene and propene from measurements of the. heterogeneous ignition temperature Perger T, Kovacs T, Turanyi T, Trevino C |
117 - 129 |
Modeling turbulent reacting jets issuing into a hot and diluted coflow Christo E |
130 - 139 |
Effects of turbulent flame development on thermoacoustic oscillations Lipatnikov A, Sathiah P |
140 - 152 |
Influence of curvature on the onset of autoignition in a corrugated counterflow mixing field Kortschik C, Honnet S, Peters N |
153 - 159 |
Thermoacoustic instabilities: Should the Rayleigh criterion be extended to include entropy changes? Nicoud F, Poinsot T |
160 - 169 |
Reexamination of the scaling laws for NOx emissions from hydrocarbon turbulent jet diffusion flames Santos A, Costa M |
170 - 186 |
Progress toward a unified detailed kinetic model for the autoignition of alkanes from C-4 to C-10 between 600 and 1200 K Buda F, Bounaceur R, Warth V, Glaude P, Fournet R, Battin-Leclerc F |