465 - 475 |
Ignition of non-premixed C-3-C-12 n-alkane flames Liu N, Ji CS, Egolfopoulos FN |
476 - 481 |
A shock tube study of methyl decanoate autoignition at elevated pressures Wang WJ, Oehlschlaeger MA |
482 - 492 |
Effects of dilution with carbon dioxide on the laminar burning velocity and flame stability of H-2-CO mixtures at atmospheric condition Prathap C, Ray A, Ravi MR |
493 - 499 |
Numerical and experimental study of the combustion of acetic acid in laminar premixed flames Leplat N, Vandooren J |
500 - 515 |
A reaction mechanism for gasoline surrogate fuels for large polycyclic aromatic hydrocarbons Raj A, Prada IDC, Amer AA, Chung SH |
516 - 527 |
Shock tube measurements of ignition delay times for the butanol isomers Stranic I, Chase DP, Harmon JT, Yang S, Davidson DF, Hanson RK |
528 - 540 |
Inhibition of hydrogen oxidation by HBr and Br-2 Dixon-Lewis G, Marshall P, Ruscic B, Burcat A, Goos E, Cuoci A, Frassoldati A, Faravelli T, Glarborg P |
541 - 551 |
A radical index for the determination of the chemical kinetic contribution to diffusion flame extinction of large hydrocarbon fuels Won SH, Dooley S, Dryer FL, Ju YG |
552 - 561 |
Ignition delay times of low-vapor-pressure fuels measured using an aerosol shock tube Haylett DR, Davidson DF, Hanson RK |
562 - 576 |
Investigation of NCN and prompt-NO formation in low-pressure C1-C4 alkane flames Sutton JA, Williams BA, Fleming JW |
577 - 590 |
Measurement of laminar burning velocity and Markstein length relative to fresh gases using a new postprocessing procedure: Application to laminar spherical flames for methane, ethanol and isooctane/air mixtures Varea E, Modica V, Vandel A, Renou B |
591 - 608 |
Scalar and its dissipation in the near field of turbulent lifted jet flame Ruan S, Swaminathan N, Bray KNC, Mizobuchi Y, Takeno T |
609 - 620 |
LES-ODT study of turbulent premixed interacting flames Park J, Echekki T |
621 - 637 |
Large Eddy Simulation of combustion instabilities in a lean partially premixed swirled flame Franzelli B, Riber E, Gicquel LYM, Poinsot T |
638 - 640 |
Blowoff mechanism of harmonically forced bluff body stabilized turbulent premixed flames Chaudhuri S, Kostka S, Renfro MW, Cetegen BM |
641 - 664 |
The internal structure of igniting turbulent sprays as revealed by complex chemistry DNS Neophytou A, Mastorakos E, Cant RS |
665 - 672 |
Response of spherical diffusion flames subjected to rotation: Microgravity experimentation and computational simulation Yoo SW, Chaudhuri S, Sacksteder KR, Zhang P, Zhu DL, Law CK |
673 - 685 |
Transient flame propagation process and flame-speed oscillation phenomenon in a carbon dust cloud Qiao L |
686 - 696 |
Effects of Damkohler number on vortex-flame interaction Ahn K, Yu KH |
697 - 706 |
Transient response of the Delft jet-in-hot coflow flames Oldenhof E, Tummers MJ, van Veen EH, Roekaerts DJEM |
707 - 721 |
Mixing characteristics and emissions of strongly-forced non-premixed and partially-premixed jet flames in crossflow Marr KC, Clemens NT, Ezekoye OA |
722 - 733 |
Numerical study of opposed non-premixed jet flames of methane in a coaxial narrow air tube Kim NI |
734 - 747 |
Reactive parametrized scalar profiles (R-PSP) mixing model for partially premixed combustion Hegetschweiler M, Zoller BT, Jenny P |
748 - 752 |
Explicit analytic prediction for hydrogen-oxygen ignition times at temperatures below crossover Boivin P, Sanchez AL, Williams FA |
753 - 756 |
Minimum ignition energy of the light-activated ignition of single-walled carbon nanotubes (SWCNTs) Chehroudi B |
757 - 769 |
A parametric study of sound generation by premixed laminar flame annihilation Talei M, Brear MJ, Hawkes ER |
770 - 783 |
A comparison of the spherical flame characteristics of sub-millimeter droplets of binary mixtures of n-heptane/iso-octane and n-heptane/toluene with a commercial unleaded gasoline Liu YC, Avedisian CT |
784 - 792 |
Contribution of homogeneous reactions to hydrogen oxidation in catalytic microchannels Zade AQ, Renksizbulut M, Friedman J |
793 - 801 |
Micro-alumina particle volatilization temperature measurements in a heterogeneous shock tube Lynch P, Krier H, Glumac N |
802 - 816 |
Experimental determination of the structure of catalytic micro-combustion flows over small-scale flat plates for methane and propane fuel Smyth SA, Kyritsis DC |
817 - 831 |
Catalytic combustion of selected hydrocarbon fuels on platinum: Reactivity and hetero-homogeneous interactions Badra JA, Masri AR |
832 - 843 |
Laser diagnostics of soot precursors in a heavy-duty diesel engine at low-temperature combustion conditions Bobba MK, Musculus MPB |
844 - 853 |
Effect of fuel on the soot nanostructure and consequences on loading and regeneration of diesel particulate filters Lapuerta M, Oliva F, Agudelo JR, Boehman AL |
854 - 858 |
Characterization of solid propellants by damped combustion oscillations Baum E, Denison MR |
859 - 869 |
Stable detonation wave propagation in rectangular-cross-section curved channels Nakayama H, Moriya T, Kasahara J, Matsuo A, Sasamoto Y, Funaki I |
870 - 881 |
Detonability of natural gas-air mixtures Gamezo VN, Zipf RK, Sapko MJ, Marchewka WP, Mohamed KM, Oran ES, Kessler DA, Weiss ES, Addis JD, Karnack FA, Sellers DD |
882 - 886 |
Selection of burning rate modifiers for hydrazinium nitroformate Tummers MJ, van der Heijden AEDM, van Veen EH |
887 - 896 |
Oblique detonation wave stability around a spherical projectile by a high time resolution optical observation Maeda S, Kasahara J, Matsuo A |
897 - 904 |
Fire signatures of spacecraft materials: Gases and particulates Vander Wal RL, Pushkarev V, Fujiyama-Novak JH |