1 - 20 |
A chemical kinetic modeling study of indene pyrolysis Jin HF, Xing LL, Hao JY, Yang JZ, Zhang Y, Cao CC, Pan Y, Farooq A |
21 - 36 |
Influence of flow topology and scalar structure on flame-tangential diffusion in turbulent non-premixed combustion Han W, Scholtissek A, Dietzsch F, Jahanbakhshi R, Hasse C |
37 - 50 |
Assessment of detailed reaction mechanisms for reproduction of ignition delay times of C2-C6 alkenes and acetylene Jach A, Rudy W, Pekalski A, Teodorczyk A |
51 - 67 |
Impact of molecular mixing and scalar dissipation rate closures on turbulent bluff-body flames with increasing local extinction Tian L, Lindstedt RP |
68 - 82 |
Analysis of kinetic models for rich to ultra-rich premixed CH4/air weak flames using a micro flow reactor with a controlled temperature profile Dubey AK, Tezuka T, Hasegawa S, Nakamura H, Maruta K |
83 - 97 |
An experimental and kinetic modeling study of n-butylcyclohexane over low-to-high temperature ranges Mao YB, Wang SX, Wu ZY, Qiu Y, Yu L, Ruan C, Chen FE, Zhu L, Lu XC |
98 - 111 |
Temperature and oxygen partial pressure dependencies of the coal-bound nitrogen to NOx conversion in O-2/CO2 environments Panahi A, Sirumalla SK, West RH, Levendis YA |
A1 - A2 |
Professor Janos Miklos Beer (1923-2018) IN MEMORY Gupta A, Zheng LG |
112 - 122 |
A numerical study on heterogeneous aluminum dust combustion including particle surface and gas-phase reaction Han DH, Sung HG |
123 - 137 |
An experimental and kinetic modeling study of the oxidation of hexane isomers: Developing consistent reaction rate rules for alkanes Zhang KW, Banyon C, Burke U, Kukkadapu G, Wagnon SW, Mehl M, Curran HJ, Westbrook CK, Pitz WJ |
138 - 149 |
Propagation of premixed isobaric flames in narrow channels with heat-losses: The asymptotic analysis revised and reliance on the flame-sheet model Kurdyumov VN |
150 - 157 |
Dynamic polarity of curved aromatic soot precursors Martin JW, Menon A, Lao CT, Akroyd J, Kraft M |
158 - 176 |
A comprehensive modeling procedure for estimating statistical properties of forced ignition Tang YH, Hassanaly M, Raman V, Sforzo B, Seitzman J |
177 - 188 |
Mechanism insight into the fast pyrolysis of xylose, xylobiose and xylan by combined theoretical and experimental approaches Hu B, Lu Q, Zhang ZX, Wu YT, Li K, Dong CQ, Yang YP |
189 - 200 |
Auto-ignition kinetics of ammonia and ammonia/hydrogen mixtures at intermediate temperatures and high pressures He X, Shu B, Nascimento D, Moshammer K, Costa M, Fernandes RX |
201 - 210 |
Fuel effects on NO formation in diesel-like jets in a vessel Ottenwalder T, Raffius T, Schulz C, Grunefeld G, Koss HJ, Pischinger S |
211 - 213 |
Plasma surface treatment of aluminum nanoparticles for energetic material applications Miller KK, Gottfried JL, Walck SD, Pantoya ML, Wu CC |
214 - 226 |
Experimental and kinetic modeling study of laminar burning velocities of NH3/air, NH3/H-2/air, NH3/CO/air and NH3/CH4/air premixed flames Han XL, Wang ZH, Costa M, Sun ZW, He Y, Cen KF |
227 - 238 |
Fundamental study on fuel-staged oxy-fuel fluidized bed combustion Duan LB, Li L, Liu DY, Zhao CS |
239 - 248 |
Counterflow diffusion flame oscillations induced by ns pulse electric discharge waveforms Tang Y, Simeni MS, Frederickson K, Yao Q, Adamovich IV |
249 - 251 |
Chemical reaction zone and electrical conductivity profile in detonating high explosives Satonkina NP, Ershov AP, Plastinin AV, Yunoshev AS |
252 - 265 |
An extended artificial thickening approach for strained premixed flames Popp S, Kuenne G, Janicka J, Hasse C |
266 - 281 |
A numerical investigation on the thermo-chemical structures of methane-oxygen diffusion flame-streets in a microchannel Kang X, Sun BW, Wang JY, Wang Y |
282 - 291 |
Burn rate enhancement of ammonium perchlorate-nitrocellulose composite solid propellant using copper oxide-graphene foam micro-structures Jain S, Chakraborty S, Qiao L |
292 - 307 |
Initial-stage reaction of methane examined by optical measurements of weak flames in a micro flow reactor with a controlled temperature profile Onda T, Nakamura H, Tezuka T, Hasegawa S, Maruta K |
308 - 321 |
Mechanisms of flame propagation in jet fuel sprays as revealed by OH/fuel planar laser-induced fluorescence and OH* chemiluminescence de Oliveira PM, Mastorakos E |
322 - 333 |
Combustion kinetics of asphalt binder components and the release processes of gaseous products Xia WJ, Xu T, Wang H, Pan YQ |
334 - 348 |
A novel modal expansion method for low-order modeling of thermoacoustic instabilities in complex geometries Laurent C, Bauerheim M, Poinsot T, Nicoud F |
349 - 362 |
Steady flame streets in a non-premixed microburner Mackay KK, Johnson HT, Freund JB |
363 - 378 |
PAHs and and soot formation in laminar partially premixed co-flow flames fuelled by PRFs at elevated pressures Liang S, Li ZS, Gao JL, Ma X, Xu HM, Shuai SJ |
379 - 389 |
Cellularization of 2-methylfuran expanding spherical flame Oppong F, Xu CS, Luo ZY, Li XL, Zhou WH, Wang CM |
390 - 399 |
Effect of nickel acetylacetonate addition on soot inception and growth in an ethylene flame studied by using in situ small-angle X-ray scattering Tang XY, Wang C, Zhang FG, Wang QP, Wang J, Seifert S, Winans RE |
400 - 410 |
Numerical simulation of ignition mode and ignition delay time of pulverized biomass particles Fatehi H, Weng WB, Costa M, Li ZS, Rabacal M, Alden M, Bai XS |
411 - 423 |
The C-5 chemistry preceding the formation of polycyclic aromatic hydrocarbons in a premixed 1-pentene flame Ruwe L, Cai LM, Moshammer K, Hansen N, Pitsch H, Kohse-Hoinghaus K |
424 - 437 |
Mutual synchronization of two lean-premixed gas turbine combustors: Phase locking and amplitude death Jegal H, Moon K, Gu J, Li LKB, Kim KT |
438 - 440 |
Liftoff height and CH2O emissions from Jet-A and a surrogate fuel burning under MILD conditions Weide P, Blunck DL |
441 - 450 |
A 3D CFD study of homogeneous-catalytic combustion of hydrogen in a spiral microreactor Yedala N, Raghu AK, Kaisare NS |
451 - 466 |
Machine learning-assisted early ignition prediction in a complex flow Popov PP, Buchta DA, Anderson MJ, Massa L, Capecelatro J, Bodony DJ, Freund JB |
467 - 475 |
Dynamic adaptive chemistry with mechanisms tabulation and in situ adaptive tabulation (ISAT) for computationally efficient modeling of turbulent combustion An J, He GQ, Qin F, Wei XG, Liu B |
476 - 489 |
The combustion of liquids and low-density solids in a cenospheric fluidised bed Zukowski W, Berkowicz G |
490 - 505 |
A framework for data-based turbulent combustion closure: A priori validation Ranade R, Echekki T |
506 - 521 |
A large-eddy simulation study on the influence of diesel pilot spray quantity on methane-air flame initiation Kahila H, Kaario O, Ahmad Z, Masouleh MG, Tekgul B, Larmi M, Vuorinen V |
522 - 535 |
Effects of controlled non-equilibrium excitation on H-2/O-2/He ignition using a hybrid repetitive nanosecond and DC discharge Mao XQ, Chen Q, Rousso AC, Chen TY, Ju YG |