1 - 4 |
Experimental observation of pulsating instability under acoustic field in downward-propagating flames at large Lewis number Yoon SH, Hu LH, Fujita O |
5 - 12 |
Influence of flame-holder temperature on the acoustic flame transfer functions of a laminar flame Mejia D, Miguel-Brebion M, Ghani A, Kaiser T, Duchaine F, Selle L, Poinsot T |
13 - 27 |
Evolution of turbulence through a broadened preheat zone in a premixed piloted Bunsen flame from conditionally-averaged velocity measurements Wabel TM, Skiba AW, Driscoll JF |
28 - 40 |
Chemical kinetic insights into the ignition dynamics of n-hexane Efstathios-Al Tingas, Wang ZD, Sarathy SM, Im HG, Goussis DA |
41 - 65 |
Scalar dissipation rates in a turbulent partially-premixed dimethyl ether/air jet flame Fuest F, Barlow RS, Magnotti G, Sutton JA |
66 - 76 |
Influence of flash boiling spray on the combustion characteristics of a spark-ignition direct-injection optical engine under cold start Yang J, Dong X, Wu Q, Xu M |
77 - 89 |
Effect of Lewis number on ball-like lean limit flames Zhou Z, Shoshin Y, Hernandez-Perez FE, van Oijen JA, de Goey LPH |
90 - 93 |
Transition condition and control mechanism of subatmospheric flame spread rate over horizontal thin paper sample Fang J, He XZ, Li KY, Wang JW, Zhang YM |
94 - 103 |
Combustion characteristics of well-dispersed boron submicroparticles and plasma effect Yu D, Kong CD, Zhuo JK, Yao Q, Li SQ, Wang MZ, Tian ZY |
104 - 115 |
Laser ignition of CL-20 (hexanitrohexaazaisowurtzitane) cocrystals McBain A, Vuppuluri V, Gunduz IE, Groven LJ, Son SF |
116 - 128 |
Autoignition of methyl propanoate and its comparisons with methyl ethanoate and methyl butanoate Kumar K, Sung CJ, Weber BW, Bunnell JA |
129 - 141 |
Laser diagnostics and chemical kinetic analysis of PAHs and soot in co-flow partially premixed flames using diesel surrogate and oxygenated additives of n-butanol and DMF Liu HF, Zhang P, Liu XL, Chen BL, Geng C, Li B, Wang H, Li ZS, Yao MF |
142 - 149 |
Effect of equivalence ratio on the thermal autoignition of aqueous ammonia ammonium nitrate monofuel Mosevitzky B, Shter GE, Grader GS |
150 - 161 |
A rapid compression machine study of autoignition, spark-ignition and flame propagation characteristics of H-2/CH4/CO/air mixtures Liu CP, Song HP, Zhang P, Wang Z, Wooldridge MS, He X, Suo GT |
162 - 169 |
Theory of first-stage ignition delay in hydrocarbon NTC chemistry Liang WK, Law CK |
170 - 179 |
Identification of initial decomposition reactions in liquid-phase HMX using quantum mechanics calculations Patidar L, Khichar M, Thynell ST |
180 - 198 |
Prediction of flame structure and pollutant formation of Sandia flame D using Large Eddy Simulation with direct integration of chemical kinetics Jaravel T, Riber E, Cuenot B, Pepiot P |
199 - 211 |
Effects of internal flue gas recirculation rate on the NOx emission in a methane/air premixed flame Shi BL, Hu J, Peng HW, Ishizuka S |
212 - 226 |
An experimental and modeling study of the ignition of dimethyl carbonate in shock tubes and rapid compression machine Alexandrino K, Alzueta MU, Curran HJ |
227 - 242 |
Nonpremixed and premixed flamelets LES of partially premixed spray flames using a two-phase transport equation of progress variable Hu Y, Kurose R |
243 - 249 |
Surface engineered nanoparticles dispersed in kerosene: The effect of oleophobicity on droplet combustion Bello MN, Hill KJ, Pantoya ML, Jouet RJ, Horn JM |
250 - 261 |
Quantitative nitrogen oxide measurements by laser-induced fluorescence in diesel-like n-heptane jets with enhanced premixing Ottenwalder T, Schulz C, Raffius T, Koss HJ, Grunefeld G, Heufer KA, Pischinger S |
262 - 272 |
A composite-fuel additive design method for n-decane low-temperature ignition enhancement Li XJ, Huang XB, Liu H |
273 - 283 |
The effect of sodium chloride on the nanoparticles observed in a laminar methane diffusion flame Moallemi A, Kazemimanesh M, Kostiuk LW, Olfert JS |
284 - 306 |
Detailed, sterically-resolved modeling of soot oxidation: Role of O atoms, interplay with particle nanostructure, and emergence of inner particle burning Frenklach M, Liu ZY, Singh RI, Galimova GR, Azyazov VN, Mebel AM |
307 - 323 |
Estimating fuel octane numbers from homogeneous gas-phase ignition delay times Naser N, Sarathy SM, Chung SH |
324 - 336 |
Combustion chemistry of iso-octane/ethanol blends: Effects on ignition and reaction pathways Barraza-Botet CL, Wooldridge MS |
337 - 356 |
Formulation of optimal surrogate descriptions of fuels considering sensitivities to experimental uncertainties Govindaraju PB, Ihme M |
357 - 366 |
Detailed numerical simulation of transient mixing and combustion of premixed methane/air mixtures in a pre-chamber/main-chamber system relevant to internal combustion engines Qin F, Shah A, Huang ZW, Peng LN, Tunestal P, Bai XS |
367 - 375 |
Turbulent burning velocity of methane-air-dust premixed flames Ranganathan S, Petrow D, Rockwell SR, Rangwala AS |
376 - 387 |
2-methylfuran pyrolysis: Gas-phase modelling and soot formation Alexandrino K, Baena C, Millera A, Bilbao R, Alzueta MU |
388 - 398 |
An experimental study of horizontal flame spread over PMMA surface in still air Korobeinichev O, Gonchikzhapov M, Tereshchenko A, Gerasimov I, Shmakov A, Paletsky A, Karpov A |
399 - 411 |
The structure and propagation of laminar flames under autoignitive conditions Krisman A, Hawkes ER, Chen JH |
412 - 427 |
Effect of crystallinity on droplet regression and disruptive burning characteristics of nanofuel droplets containing amorphous and crystalline boron nanoparticles Ojha PK, Maji R, Karmakar S |
428 - 439 |
A heterogeneous multiscale method for stiff combustion chemistry integration in reactive flows Zhou DZ, Yang WM |
440 - 452 |
The influence of low-temperature chemistry on partially-premixed counterflow n-heptane/air flames Stagni A, Brignoli D, Cinquanta M, Cuoci A, Frassoldati A, Ranzi E, Faravelli T |
453 - 468 |
Laminar syngas-air premixed flames in a closed rectangular domain: DNS of flame propagation and flame/wall interactions Jafargholi M, Giannakopoulos GK, Frouzakis CE, Boulouchos K |
469 - 482 |
Modal decomposition of the unsteady flow field in compression-ignited combustion chambers Torregrosa AJ, Broatch A, Garcia-Tiscar J, Gomez-Soriano J |
483 - 487 |
Measuring the soot onset temperature in high-pressure n-dodecane spray pyrolysis Skeen SA, Yasutomi K |
488 - 497 |
Distribution of temperature, H2O and atomic potassium during entrained flow biomass combustion - Coupling in situ TDLAS with modeling approaches and ash chemistry Qu ZC, Holmgren P, Skoglund N, Wagner DR, Brostrom M, Schmidt FM |
498 - 504 |
Extreme role of preferential diffusion in turbulent flame propagation Yang S, Saha A, Liang WK, Wu FJ, Law CK |