843 - 844 |
Preface Law CK, Peters N |
845 - 870 |
Comprehensive description of chemistry in combustion modeling Law CK |
871 - 906 |
Chemical inhibition of nonpremixed methane flames by CF3Br Seshadri K |
907 - 931 |
Reduced kinetics and coupling functions for calculating CO and no emissions in gas-turbine combustion Lepinette A, Linan A, Lazaro B, Sanchez AL |
933 - 953 |
Lifted laminar jet diffusion flames Linan A, Fernandez-Tarrazo E, Vera M, Sanchez AL |
955 - 978 |
FEM-simulation of laminar flame propagation II: Twin and triple flames in counterflow Michaelis B, Rogg B |
979 - 989 |
Comparison of flame-front instabilities with instabilities of ablation fronts in inertial-confinement fusion Clavin P, Masse L, Williams FA |
991 - 1022 |
On the fast-time cellular instabilities of Linan's diffusion-flame regime Kim JS, Gubernov V |
1023 - 1047 |
Methane-air Markstein numbers from measurements of thermoacoustic instability Aldredge RC |
1049 - 1071 |
The first turbulent combustion Gibson CH |
1073 - 1094 |
Recent research on premixed flames in stagnating turbulence Libby PA |
1095 - 1107 |
Scaling of production, kinematic restoration, and dissipation of the mean flame surface area Wenzel H, Peters N |
1109 - 1150 |
A generalized model of acoustic response of turbulent premixed flame and its application to gas-turbine combustion instability analysis You DN, Huang Y, Yang V |
1151 - 1166 |
Theory of spherically symmetrical droplet combustion with gas-phase fuel pyrolysis Shaw BD |
1167 - 1182 |
Flame propagation in sprays and particle clouds of less volatile fuels Niioka T |
1183 - 1229 |
Fundamental two-phase-flow models of combustion in porous energetic materials Margolis SB |
1231 - 1252 |
Numerical modeling of convective effects on piloted ignition of composite materials Lautenberger CW, Zhou YY, Fernandez-Pello AC |