1 - 21 |
Study of low-temperature combustion in a low-NOx burner Mosiewicz P, Porshnev P, Nester S, Kennedy LA, Fridman A, Rabovitser J, Cygan D |
23 - 33 |
On premixed flames as gasdynamic discontinuities: A simple approach to derive their propagation speed Klimenko AY, Class AG |
35 - 45 |
A preliminary kinetic model of chromium in a hydrogen/air flame Yu SY, Kennedy IM |
47 - 63 |
Effects of mass flow rate and initial temperature on predictions of NO and OH from detailed chemical kinetics models Reisel JR |
65 - 101 |
Theory of weakly unstable multi-dimensional detonation He LT |
103 - 118 |
Extinction of laminar counterflow diffusion flames of CH4 and C3H8 fuels with inert jet impingement Chen RH, Lattimer C, Roberts WL |
119 - 150 |
Numerical modeling of turbulent premixed flames in the thin-reaction-zones regime Kim WW, Menon S |
151 - 163 |
Measurements of polymethyl methacrylate diffusion flames in von Karman swirling flows King MD, Nayagam V, Williams FA |
165 - 189 |
Transient flow field effects on soot volume fraction in diffusion flames Decroix ME, Roberts WL |
191 - 220 |
On by-product flames with implications towards emission of organics during waste incineration Chao BH, Axelbaum RL |
221 - 229 |
On condensation growth of oxide particles during gas-phase combustion of metals Altman IS |
231 - 258 |
Combustion oscillations close to the lean flammability limit De Zilwa SRN, Uhm JH, Whitelaw JH |
259 - 315 |
Stability of quasi-steady deflagrations in confined porous energetic materials Telengator AM, Margolis SB, Williams FA |
317 - 344 |
A detailed modelling of the spray ignition process in diesel engines Sazhina EM, Sazhin SS, Heikal MR, Babushok VI, Johns RJR |
345 - 367 |
Mathematical modelling of nitric oxide formation in turbulent diffusion flames doped with a nitrogen compound Ma CY, Mahmud T, Hampartsoumian E, Richardson J, Gaskell PH |
369 - 397 |
Computing of oxy-natural gas flames using both a global combustion scheme and a chemical equilibrium procedure Breussin F, Lallemant N, Weber R |