285 - 298 |
The evolution of soot precursor particles in a diffusion flame Dobbins RA, Fletcher RA, Chang HC |
299 - 312 |
Structure and acoustic-pressure response of hydrogen-oxygen diffusion flames at high pressure Sohn CH, Chung SH, Lee SR, Kim JS |
313 - 326 |
Laser-induced fluorescence, mass spectrometric, and modeling studies of neat and NH3-Doped H-2/N2O/Ar flames Venizelos DT, Sausa RC |
327 - 334 |
Effects of oxygen concentration on combustion of aluminum in oxygen/nitrogen mixture streams Zhu YX, Yuasa S |
335 - 353 |
An experimental and numerical study of a laminar triple flame Plessing T, Terhoeven P, Peters N, Mansour MS |
354 - 363 |
Mechanisms of combustion wave propagation in heterogeneous reaction systems Hwang S, Mukasyan AS, Varma A |
364 - 371 |
Temperature measurements of optically non-gray particles in high-temperature dusty media Vaulina OS, Nefedov AP, Petrov OF, Samarian AA, Chernyschev AW |
372 - 382 |
Effect of radiative heat loss on diffusion flames in quiescent microgravity atmosphere Atreya A, Agrawal S |
383 - 394 |
Ignition and combustion of fuel pockets moving in an oxidizing atmosphere Daou J |
395 - 405 |
Premixed-flame propagation in turbulent Taylor-Couette flow Aldredge RC, Vaezi V, Ronney PD |
406 - 416 |
No eigenvalue method for computing the burning rates of HMX propellants Prasad K, Yetter RA, Smooke MD |
417 - 423 |
Thermal decomposition of energetic materials 73: The identity and temperature dependence of "minor" products from flash-heated RDX Gongwer PE, Brill TB |
424 - 436 |
Flame acceleration and transition to detonation in benzene-air mixtures Knystautas R, Lee JHS, Shepherd JE, Teodorczyk A |
437 - 442 |
Soot formation characteristics of laminar partially premixed flames Mitrovic A, Lee TW |