395 - 417 |
Numerical simulation of turbulent propane-air combustion with nonhomogeneous reactants Haworth DC, Blint RJ, Cuenot B, Poinsot TJ |
418 - 429 |
Modeling the rich combustion of aliphatic hydrocarbons D'Anna A, Violi A, D'Alessio A |
430 - 438 |
An inherently chemical mechanism for auto-oscillations in solid-state combustion Kashireninov OE, Yuranov IA, Fomin AA, Shtessel EA |
439 - 452 |
Buoyant low-stretch diffusion flames beneath cylindrical PMMA samples Olson SL, T'ien JS |
453 - 470 |
Development of a shear layer ignition model for application to direct-injection diesel engines Schihl P, Atreya A, Bryzik W |
471 - 487 |
Suppression of nonpremixed flames by fluorinated ethanes and propanes Zegers EJP, Williams BA, Fisher EM, Fleming JW, Sheinson RS |
488 - 500 |
Reciprocating flow regeneration of soot filters Konstandopoulos AG, Kostoglou M |
501 - 512 |
Pressure effects on combustion of methanol and methanol/dodecanol single droplets and droplet pairs in microgravity Okai K, Moriue O, Araki M, Tsue M, Kono M, Sato J, Dietrich DL, Williams FA |
513 - 524 |
Detailed modeling of soot formation in hydrocarbon pyrolysis Krestinin AV |
525 - 534 |
Effects of fuel Lewis number on nitric oxide emission of diluted H-2 turbulent jet diffusion flames Gabriel R, Navedo JE, Chen RH |
535 - 541 |
Oxidation and combustion of low alkylbenzenes at high pressure: Comparative reactivity and auto-ignition Roubaud A, Minetti R, Sochet LR |
542 - 547 |
The influence of fluorinated hydrocarbons on the combustion of gaseous mixtures in a closed vessel Shebeko YN, Azatyan VV, Bolodian IA, Navzenya VY, Kopyov SN, Shebeko DY, Zamishevski ED |
548 - 550 |
The new route forming NO via NNH Konnov AA, Colson G, De Ruyck J |
551 - 554 |
Ignition times in the theory of branched-chain thermal explosions Varatharajan B, Williams FA |