1 - 22 |
Large Eddy Simulation of a premixed bluff body stabilized flame using global and skeletal reaction mechanisms Zettervall N, Nordin-Bates K, Nilsson EJK, Fureby C |
23 - 32 |
Study of the low-temperature reactivity of large n-alkanes through cool diffusion flame extinction Reuter CB, Lee M, Won SH, Ju YG |
33 - 50 |
Simultaneous measurements of gas temperature, soot volume fraction and primary particle diameter in a sooting lifted turbulent ethylene/air non-premixed flame Gu DH, Sun ZW, Dally BB, Medwell PR, Alwahabi ZT, Nathan GJ |
51 - 62 |
Transient response of a laminar premixed flame to a radially diverging/converging flow Sahafzadeh M, Kostiuk LW, Dworkin SB |
63 - 73 |
A sectional PAH model with reversible PAH chemistry for CFD soot simulations Eberle C, Gerlinger P, Aigner M |
74 - 85 |
Investigation of combustion process of a kerosene fueled combustor with air throttling Tian Y, Yang SH, Le JL, Zhong FY, Tian XQ |
86 - 94 |
A six-component surrogate for emulating the physical and chemical characteristics of conventional and alternative jet fuels and their blends Kim D, Martz J, Abdul-Nour A, Yu X, Jansons M, Violi A |
95 - 116 |
Experimental investigation of turbulent flames in uniform dispersions of ethanol droplets Kariuki J, Mastorakos E |
A1 - A2 |
Professor Robert William Bilger (1935-2015) In Memoriam Masri AR, Pope SB |
A3 - A4 |
Professor Howard Benedict Palmer (1925-2017) In Memorium Reuther J |
117 - 129 |
On defining progress variable for Raman/Rayleigh experiments in partially-premixed methane flames Barlow RS, Magnotti G, Cutcher HC, Masri AR |
130 - 137 |
On explosion limits of H-2/CO/O-2 mixtures Liang WK, Liu J, Law CK |
138 - 153 |
Impact of the injector size on the transfer functions of premixed laminar conical flames Gaudro R, Gatti M, Mirat C, Schuller T |
154 - 156 |
Synthesis and reactive characterization of aluminum iodate hexahydrate crystals [Al(H2O)(6)](IO3)(3)(HIO3)(2) Smith DK, Bello MN, Unruh DK, Pantoya ML |
157 - 171 |
A study on the interaction between local flow and flame structure for mixing-controlled Diesel sprays Garcia-Oliver JM, Malbec LM, Toda HB, Bruneaux G |
172 - 184 |
Kinetics of Ethylene Glycol: The first validated reaction scheme and first measurements of ignition delay times and speciation data Kathrotia T, Naumann C, Osswald P, Kohler M, Riedel U |
185 - 198 |
The influence of acoustic impedance on gaseous layered detonations bounded by an inert gas Houim RW, Fievisohn RT |
199 - 218 |
Large-eddy simulation of a supersonic lifted jet flame: Analysis of the turbulent flame base Bouheraoua L, Domingo P, Ribert G |
219 - 227 |
Convection-driven melting in an n-octane pool fire bounded by an ice wall Farahani HF, Alva WUR, Rangwala AS, Jomaas G |
228 - 237 |
Droplet size distribution effects in an edge flame with a fuel spray Greenberg JB |
238 - 241 |
Diffusive-thermal effect on local chemical structures in premixed hydrogen-air flames Matsugi A, Terashima H |
242 - 252 |
Chemical model reduction under uncertainty Galassi RM, Valorani M, Najm HN, Safta C, Khalil M, Ciottoli PP |
253 - 266 |
Evaluation of mixture-fraction-based turbulent-reaction-rate model assumptions for high-pressure reactive flows Bellan J |
267 - 279 |
Improved combustion model of boron particles for ducted rocket combustion chambers Kalpakli B, Acar EB, Ulas A |
280 - 299 |
Assessment of mixing time scales for a sparse particle method Vo S, Stein OT, Kronenburg A, Cleary MJ |
300 - 311 |
Premixed flame chemistry of a gasoline primary reference fuel surrogate Selim H, Mohamed SY, Hansen N, Sarathy SM |
312 - 324 |
An investigation of GPU-based stiff chemical kinetics integration methods Curtis NJ, Niemeyer KE, Sung CJ |
325 - 337 |
Experimental and numerical study on NOx formation in CH4-air mixtures diluted with exhaust gas components Lipardi ACA, Versailles P, Watson GMG, Bourque G, Bergthorson JM |
338 - 353 |
A generalized model of flame to surface heat feedback for laminar wall flames Leventon IT, Korver KT, Stoliarov SI |