3003 - 3013 |
An experimental and modeling study of 2-methyl-1-butanol oxidation in a jet-stirred reactor Serinyel Z, Togbe C, Dayma G, Dagaut P |
3014 - 3021 |
The high-temperature autoignition of biodiesels and biodiesel components Wang WJ, Gowdagiri S, Oehlschlaeger MA |
3022 - 3030 |
Autoignition delay times of propane mixtures under MILD conditions at atmospheric pressure Sabia P, de Joannon M, Lavadera ML, Giudicianni P, Ragucci R |
3031 - 3039 |
Skeletal reaction model generation, uncertainty quantification and minimization: Combustion of butane Xin YX, Sheen DA, Wang H, Law CK |
3040 - 3050 |
A general study of counterflow diffusion flames at subcritical and supercritical conditions: Oxygen/hydrogen mixtures Huo HF, Wang XJ, Yang V |
3051 - 3062 |
Tulip flame - the mechanism of flame front inversion Ponizy B, Claverie A, Veyssiere B |
3063 - 3072 |
Fiber-based endoscopes for 3D combustion measurements: View registration and spatial resolution Kang M, Wu Y, Ma L |
3073 - 3084 |
Heat release rate markers for premixed combustion Nikolaou ZM, Swaminathan N |
3085 - 3099 |
Evaluation of a reduced mechanism for turbulent premixed combustion Nikolaou ZM, Swaminathan N, Chen JY |
3100 - 3133 |
Large eddy simulation/probability density function simulations of bluff body stabilized flames Popov PP, Pope SB |
3134 - 3153 |
Validation and implementation of algebraic LES modelling of scalar dissipation rate for reaction rate closure in turbulent premixed combustion Ma T, Gao Y, Kempf AM, Chakraborty N |
3154 - 3165 |
Flame brush characteristics and burning velocities of premixed turbulent methane/air Bunsen flames Tamadonfar P, Gulder OL |
3166 - 3180 |
Thermo-acoustic velocity coupling in a swirl stabilized gas turbine model combustor Caux-Brisebois V, Steinberg AM, Arndt CM, Meier W |
3181 - 3190 |
Suppression of instabilities in burning droplets using preferential acoustic perturbations Miglani A, Basu S, Kumar R |
3191 - 3200 |
A soot particle surface reactivity model applied to a wide range of laminar ethylene/air flames Veshkini A, Dworkin SB, Thomson MJ |
3201 - 3210 |
Optical and electrical characterization of carbon nanoparticles produced in laminar premixed flames De Falco G, Commodo M, Bonavolonta C, Pepe GP, Minutolo P, D'Anna A |
3211 - 3221 |
On modeling the diffusion to kinetically controlled burning limits of micron-sized aluminum particles Bojko BT, DesJardin PE, Washburn EB |
3222 - 3228 |
Structural and thermal properties of boron nanoparticles synthesized from B2O3+3Mg+kNaCl mixture Yoo BU, Nersisyan HH, Ryu HY, Lee JS, Lee JH |
3229 - 3236 |
The effects of gas-phase and in-depth radiation absorption on ignition and steady burning rate of PMMA Staggs J |
3237 - 3248 |
Combustion of forest litters under slope conditions: Burning rate, heat release rate, convective and radiant fractions for different loads Tihay V, Morandini F, Santoni PA, Perez-Ramirez Y, Barboni T |
3249 - 3262 |
The effects of applying electric fields on the mass spectrometric sampling of positive and negative ions from a flame at atmospheric pressure Hayhurst AN, Goodings JM, Taylor SG |
3263 - 3266 |
Effect of surface tension on the temperature of burning metal droplets Dreizin EL |