429 - 439 |
Axisymmetric versus non-axisymmetric flames in cylindrical tubes Petchenko A, Bychkov V |
440 - 444 |
Pressure diffusivity and low-velocity detonation Gordon PV, Sivashinsky GI |
445 - 456 |
Kinetics and visualization of soot oxidation using transmission electron microscopy Jung HJ, Kittelson DB, Zachariah MR |
457 - 466 |
Dilution limits of n-butane/air mixtures under conditions relevant to HCCI combustion Huang Y, Sung CJ, Eng JA |
467 - 480 |
Extinction of a premixed flame by a large variation in axial velocity Kim NI, Lee UD, Shin HD |
481 - 492 |
Detailed numerical simulation of radiative transfer in a nonluminous turbulent jet diffusion flame Coelho PJ |
493 - 500 |
Synergistic effect on soot formation in counterflow diffusion flames of ethylene-propane mixtures with benzene addition Lee SM, Yoon SS, Chung SH |
501 - 518 |
Ammonia chemistry below 1400 K under fuel-rich conditions in a flow reactor Skreiberg O, Kilpinen P, Glarborg P |
519 - 532 |
Modeling the development of char structure during the rapid heating of pulverized coal Yu JL, Lucas J, Wall T, Liu G, Sheng CD |
533 - 547 |
The influence of gas radiation on the temperature decrease above a burner with a flat porous inert surface Lammers FA, de Goey LPH |
548 - 556 |
The chemical structures of opposed flow diffusion flames of C3 oxygenated hydrocarbons (isopropanol, dimethoxy methane, and dimethyl carbonate) and their mixtures Sinha A, Thomson MJ |
557 - 566 |
Effects of multicomponent diffusion on predicted ignition characteristics of an n-heptane diffusion flame Gopalakrishnan V, Abraham J |
567 - 569 |
Physical properties of a LPG flame with high-temperature air on a regenerative burner Blasiak W, Yang WH, Rafidi N |