529 - 532 |
Plasma assisted combustion: Progress, challenges, and opportunities Ju YG, Sun WT |
533 - 543 |
CO2 and H2O effect on propane auto-ignition delay times under mild combustion operative conditions Sabia P, Lavadera ML, Giudicianni P, Sorrentino G, Ragucci R, de Joannon M |
544 - 553 |
Chemical kinetics mechanism for oxy-fuel combustion of mixtures of hydrogen sulfide and methane Bongartz D, Ghoniem AF |
554 - 570 |
Experimental and modeling study on the high-temperature oxidation of Ammonia and related NOx chemistry Mathieu O, Petersen EL |
571 - 579 |
High-pressure reduced-kinetics mechanism for n-hexadecane autoignition and oxidation at constant pressure Kourdis PD, Bellan J |
580 - 585 |
Explicit formulation of the reactivity of hydrogen, methane and decane Veggi L, Boivin P |
586 - 596 |
Soot modeling of counterflow diffusion flames of ethylene-based binary mixture fuels Wang Y, Raj A, Chung SH |
597 - 612 |
Re-creating Hottel's emissivity charts for carbon dioxide and extending them to 40 bar pressure using HITEMP-2010 data base Alberti M, Weber R, Mancini M |
613 - 627 |
Computational investigation of the stability of a lifted strongly buoyant jet flame Walchshofer C, Steiner H |
628 - 641 |
Effect of vorticity waves on azimuthal instabilities in annular chambers Li L, Sun XF |
642 - 651 |
Capabilities and limitations of 3D flame measurements based on computed tomography of chemiluminescence Li XS, Ma L |
652 - 667 |
An efficient flamelet-based combustion model for compressible flows Saghafian A, Terrapon VE, Pitsch H |
668 - 687 |
A multiple-inlet mixture fraction model for nonpremixed combustion Gomet L, Robin V, Mura A |
688 - 702 |
Direct numerical simulations of autoignition in stratified dimethyl-ether (DME)/air turbulent mixtures Bansal G, Mascarenhas A, Chen JH |
703 - 716 |
Simulation of turbulent lifted methane jet flames: Effects of air-dilution and transient flame propagation Chen Z, Ruan SH, Swaminathan N |
717 - 726 |
A DNS study of the ignition of lean PRF/air mixtures with temperature inhomogeneities under high pressure and intermediate temperature Kim SO, Luong MB, Chen JH, Yoo CS |
727 - 735 |
Preferential transport effects in premixed bluff-body stabilized CH4/H-2 flames Barlow RS, Dunn MJ, Magnotti G |
736 - 744 |
Simulations of traveling hybrid waves Gerasev AP |
745 - 758 |
Temperature, velocity and air entrainment of fire whirl plume: A comprehensive experimental investigation Lei J, Liu NA, Zhang LH, Satoh K |
759 - 773 |
Spray flame structure in conventional and hot-diluted combustion regime Rodrigues HC, Tummers MJ, van Veen EH, Roekaerts DJEM |
774 - 787 |
Autoignition and combustion characteristics of kerosene droplets with dilute concentrations of aluminum nanoparticles at elevated temperatures Javed I, Baek SW, Waheed K |
788 - 796 |
Desorption kinetics of CO in char oxidation and gasification in O-2, CO2 and H2O Karlstrom O, Brink A, Hupa M |
797 - 808 |
Devolatilization of a single fuel particle in a fluidized bed under oxy-combustion conditions. Part A: Experimental results Bu CS, Leckner B, Chen XP, Pallares D, Liu DY, Gomez-Barea A |
809 - 818 |
Devolatilization of a single fuel particle in a fluidized bed under oxy-combustion conditions. Part B: Modeling and comparison with measurements Bu CS, Leckner B, Chen XP, Gomez-Barea A, Liu DY, Pallares D |
819 - 824 |
Mach reflection of cellular detonations Fortin Y, Liu J, Lee JHS |
825 - 835 |
Ignition and flameholding in a supersonic combustor by an electrical discharge combined with a fuel injector Savelkin KV, Yarantsev DA, Adamovich IV, Leonov SB |
836 - 845 |
Burn rate characterization of iso-propyl nitrate - A neglected monopropellant Ambekar A, Sreedhara S, Chowdhury A |
846 - 854 |
Exploring mechanisms for agglomerate reduction in composite solid propellants with polyethylene inclusion modified aluminum Sippel TR, Son SF, Groven LJ, Zhang SS, Dreizin EL |
855 - 863 |
A microscale combustion calorimeter study of gas phase combustion of polymers Walters RN, Safronava N, Lyon RE |
864 - 873 |
Singularly perturbed homotopy analysis method applied to the pressure driven flame in porous media Nave O, Gol'dshtein V, Ajadi S |
874 - 875 |
Unclosed Favre-averaged equation for the chemical source and an analytical formulation of the problem of turbulent premixed combustion in the flamelet regime Zimont V |