1 - 13 |
Theoretical analysis of the propagation of a reaction front in a packed bed Gort R, Brouwers JJH |
14 - 34 |
Rapid, upward buoyant filtration combustion waves driven by convection Wahle CW, Matkowsky BJ |
35 - 49 |
Steady and pulsating propagation and extinction of rich hydrogen/air flames at elevated pressures Christiansen EW, Law CK, Sung CJ |
50 - 64 |
The potential for low NOx front a precessing jet burner of coal Megalos NP, Smith NL, Zhang DK |
65 - 81 |
Self-ignition and combustion modeling of initially nonpremixed turbulent systems Da Cruz AP, Baritaud TA, Poinsot TJ |
82 - 105 |
The structure of coal-air-CH4 laminar flames in a low-pressure burner: CARS measurements and modeling studies Bradley D, Lawes M, Scott MJ, Usta N |
106 - 126 |
Kinetic modeling of the decomposition and flames of hydrazine Konnov AA, De Ruyck J |
127 - 136 |
On PAH formation in strained counterflow diffusion flames Bohm H, Kohse-Hoinghaus K, Lacas F, Rolon C, Darabiha N, Candel S |
137 - 155 |
The kinetic nature of sulfur's chemistry in flames Schofield K |
156 - 164 |
An experimental study of propane combustion in a fluidized-bed gasifier Ross DP, Yan HM, Zhang DK |
165 - 177 |
Pyrolytic behavior and products of some wood varieties Di Blasi C, Branca C, Santoro A, Hernandez EG |
178 - 194 |
Numerical study of the effect of heat losses on self-propagating reactions in multilayer foils Jayaraman S, Mann AB, Reiss M, Weihs TP, Knio OM |
195 - 212 |
Formation of NO from combustion of volatiles from municipal solid wastes Sorum L, Skreiberg O, Glarborg P, Jensen A, Dam-Johansen K |
213 - 224 |
Characteristics of turbulent heat transport in nonpremixed jet flames Caldeira-Pires A, Heitor MV |
225 - 230 |
Combined effects of nongray radiation and pressure on premixed CH4/O-2/CO2 flames Ruan JM, Kobayashi H, Niioka T, Ju YG |
231 - 245 |
The order, arrhenius parameters, and mechanism of the reaction between gaseous oxygen and solid carbon Bews IM, Hayhurst AN, Richardson SM, Taylor SG |
246 - 254 |
Measurement and modeling of shock-tube ignition delay for propene Qin ZW, Yang HX, Gardiner WC |
255 - 267 |
Phase changes of benzo(a)pyrene in supercritical water combustion Fang Z, Kozinski JA |
268 - 274 |
On the correspondence between the homogeneous and heterogeneous theories of SHS Makino A, Law CK |
275 - 294 |
Flow-field effects on soot formation in normal and inverse methane-air diffusion flames Kaplan CR, Kailasanath K |
295 - 310 |
Soot and NO formation in methane-oxygen enriched diffusion flames Beltrame A, Porshnev P, Merchan-Merchan W, Saveliev A, Fridman A, Kennedy LA, Petrova O, Zhdanok S, Amouri F, Charon O |
311 - 325 |
On the similitude between lifted and burner-stabilized triple flames: A numerical and experimental investigation Puri IK, Aggarwal SK, Ratti S, Azzoni R |
326 - 329 |
Simulation of methane autoignition in a rapid compression machine with creviced pistons Brett L, MacNamara J, Musch P, Simmie JM |
330 - 333 |
Sensitivity of calculated extinction strain rate to molecular transport formulation in nonpremixed counterflow flames Williams BA |
334 - 336 |
On the extrapolation of results from oven heating tests for propensity to self-heating Jones JC |