1 - 24 |
Flame stretch interactions of laminar premixed hydrogen/air flames at normal temperature and pressure Aung KT, Hassan MI, Faeth GM |
25 - 36 |
Low temperature interactions between hydrocarbons and nitric oxide: An experimental study Alzueta MU, Glarborg P, DamJohansen K |
37 - 42 |
Shock tube study of the effect of nitrogen or hydrogen on ignition delays in mixtures of monomethylhydrazine plus oxygen plus argon Catoire L, Bassin X, Ingignoli W, Dupre G, Paillard C |
43 - 64 |
A coherent flame model of premixed turbulent combustion in a counterflow geometry Wu AS, Bray KNC |
65 - 86 |
Planar laser Rayleigh scattering for quantitative vapor-fuel imaging in a diesel jet Espey C, Dec JE, Litzinger TA, Santavicca DA |
87 - 104 |
Flash pyrolysis of polyethyleneglycol .1. Chemometric resolution of FTIR spectra of the volatile products at 370-550 degrees C Arisawa H, Brill TB |
105 - 112 |
Flash pyrolysis of polyethyleneglycol .2. Kinetics determined by T-jump/FTIR spectroscopy Arisawa H, Brill TB |
113 - 144 |
Direct numerical solution of turbulent nonpremixed combustion with multistep hydrogen-oxygen kinetics Montgomery CJ, Kosaly G, Riley JJ |
145 - 162 |
Droplet ignition in a high-temperature convective environment Huang LW, Chen CH |
163 - 172 |
Stabilization of lifted tribrachial flames in a laminar nonpremixed jet Lee BJ, Chung SH |
173 - 187 |
Statistical model of turbulent premixed combustion with interacting flamelets Burluka AA, Gorokhovski MA, Borghi R |
188 - 197 |
Thermal oxidation of chloroform Lou JC, Chang YS |
198 - 223 |
Numerical simulations of autoignition in turbulent mixing flows Mastorakos E, Baritaud TA, Poinsot TJ |
224 - 236 |
Universal behaviour in erosive burning of solid propellants Mukunda HS, Paul PJ |
237 - 252 |
Wall effects on the propagation and extinction of steady, strained, laminar premixed flames Egolfopoulos FN, Zhang H, Zhang Z |
253 - 265 |
Reaction-zone structure of a steady-state detonation wave in a cylindrical charge Gamezo VN, Oran ES |
266 - 281 |
Soot zone structure and sooting limit in diffusion flames: Comparison of counterflow and co-flow flames Kang KT, Hwang JY, Chung SH, Lee W |