1 - 22 |
High-temperature pyrolysis of dimethyl ether in shock waves Hidaka Y, Sato K, Yamane M |
23 - 45 |
Stabilization mechanisms of lifted laminar flames in axisymmetric jet flows Chen YC, Bilger RW |
46 - 67 |
Ignition and combustion of turbulized dust-air mixtures Smirnov NN, Nikitin VF, Legros JC |
68 - 81 |
The effect of curvature on pathological detonations Sharpe GJ |
82 - 94 |
The role of particles in the inhibition of premixed flames by iron pentacarbonyl Rumminger MD, Linteris GT |
95 - 106 |
Nonlinear evolution of diffusion flame oscillations triggered by radiative heat loss Sohn CH, Kim JS, Chung SH, Maruta K |
107 - 118 |
Diffusion flames and their flickering motions related with Froude numbers under various gravity levels Sato H, Amagai K, Arai M |
119 - 139 |
Flame stretch effects on partially premixed flames Choi CW, Puri IK |
140 - 158 |
Flammability limits, ignition energy, and flame speeds in H-2-CH4-NH3-N2O-O-2-N-2 mixtures Pfahl UJ, Ross MC, Shepherd JE, Pasamehmetoglu KO, Unal C |
159 - 174 |
Methane oxidation over noble metal gauzes: An LIF study Davis MB, Pawson MD, Veser G, Schmidt LD, Veser G |
175 - 188 |
Quantitative measurements of nitric oxide in high-pressure (2-5 atm), swirl-stabilized spray flames via laser-induced fluorescence Cooper CS, Laurendeau NM |
189 - 200 |
Efficiencies of low-momentum jet diffusion flames in crosswinds Johnson MR, Kostiuk LW |
201 - 213 |
Numerical and experimental investigation of matrix-stabilized methane/air combustion in porous inert media Brenner G, Pickenacker K, Pickenacker O, Trimis D, Wawrzinek K, Weber T |
214 - 226 |
Propagation of the ignition front in beds of wood particles Saastamoinen JJ, Taipale R, Horttanainen M, Sarkomaa P |
227 - 240 |
Distributions of instantaneous heat release by the cross-correlation of chemiluminescent emissions Lawn CJ |
241 - 251 |
The effect of time-dependent partial premixing in radiating flamelets Shamim T, Atreya A |
252 - 265 |
Simultaneous Rayleigh imaging and CH-PLIF measurements in a lifted jet diffusion flame Watson KA, Lyons KM, Donbar JM, Carter CD |
266 - 274 |
Experiments on the ignition of monocomponent and bicomponent fuel droplets in convective flow Yang JR, Yukao CY, Whang JJ, Wong SC |
275 - 279 |
Possibilities and limitations of the Eddy Break-Up Model Brink A, Mueller C, Kilpinen P, Hupa M |
280 - 280 |
A simple model for the vaporization of droplets with large numbers of components (vol 121, pg 334, 2000) Hallett WLH |