1 - 12 |
The impact of cyclic fuels on the formation and structure of soot Salamanca M, Botero ML, Martin JW, Dreyer JAH, Akroyd J, Kraft M |
13 - 19 |
On the effect of pressure on soot nanostructure: A Raman spectroscopy investigation Commodo M, Karatas AE, De Falco G, Minutolo P, D'Anna A, Gulder MO |
20 - 32 |
Oxidation kinetics of n-pentanol: A theoretical study of the reactivity of the 1-hydroxy-1-peroxypentyl radical Duan YZ, Monge-Palacios M, Grajales-Gonzalez E, Han D, Moller KH, Kjaergaard HG, Sarathy SM |
33 - 43 |
Combustion performance of composite propellants containing core-shell Al@M(IO3)(x) metastable composites Tang DY, Fan ZM, Yang GC, Wang YL, Liu PJ, Yan QL |
44 - 44 |
Hybrid Lattice Boltzmann-Finite Difference model for low Mach number combustion simulation (vol 209, pg 394, 2019) Hosseini SA, Safari H, Darabiha N, Thevenin D, Krafczyk M |
45 - 56 |
Exploring the internal structure of soot particles using nanoindentation: A reactive molecular dynamics study Pascazio L, Martin JW, Bowal K, Akroyd J, Kraft M |
57 - 69 |
Opposed flow flame spread over thermally thick solid fuels: buoyant flow suppression, stretch rate theory, and the regressive burning regime Hossain S, Wichman IS, Miller FJ, Olson SL |
70 - 85 |
Evaluation of semi-empirical soot models for nonpremixed flames with increased stoichiometric mixture fraction and strain Johnson PR, Chakrabarty RK, Kumfer BM |
86 - 101 |
Effects of liquid fuel/wall interaction on thermoacoustic instabilities in swirling spray flames Lo Schiavo E, Laera D, Riber E, Gicquel L, Poinsot T |
102 - 119 |
LES/PDF modeling of swirl-stabilized non-premixed methane/air flames with local extinction and re-ignition Yu S, Liu X, Bai XS, Elbaz AM, Roberts WL |
120 - 128 |
Accurate multicomponent Fick diffusion at a lower cost than mixture-averaged approximation: Validation in steady and unsteady counterflow flamelets Naud B, Arias-Zugasti M |
129 - 135 |
Burning rate and flame structure of cocrystals of CL-20 and a polycrystalline composite crystal of HMX/AP Ruesch MD, Powell MS, Satija A, Ruesch JP, Vuppuluri VS, Lucht RP, Son SF |
136 - 146 |
Tantalum network nanoparticles from a Ta2O5+kMg system by liquid magnesium controlled combustion Nersisyan H, Ryu HS, Lee JH, Suh H, Won HI |
147 - 160 |
Computational investigations on the thermochemistry and kinetics for the autoignition of 2-pentanone Kuzhanthaivelan S, Rajakumar B |
161 - 177 |
Experimental investigation of the ignition process in a separated dual-swirl spray flame Yang SH, Zhang C, Lin YZ, Xue X, Gan XH |
178 - 197 |
Autoignition of CRC diesel surrogates at low temperature combustion conditions: Rapid compression machine experiments and modeling Wang MY, Kukkadapu G, Zhang KW, Wagnon SW, Mehl M, Pitz WJ, Westbrook CK, Sung CJ |
198 - 211 |
Eulerian thermo-mechanical simulations of heterogeneous solid propellants using an approximate projection method Kumar T, Rycroft CH, Jackson TL |
212 - 224 |
Linear burn rate of green ionic liquid multimode monopropellant Rasmont N, Broemmelsiek EJ, Rovey JL |
225 - 241 |
Evaluation of reaction kinetics models for meso-scale simulations of hotspot initiation and growth in HMX Rai NK, Koundinyan SP, Sen O, Schweigert IV, Henson BF, Udaykumar HS |
242 - 257 |
Multi-stage heat release in lean combustion: Insights from coupled tangential stretching rate (TSR) and computational singular perturbation (CSP) analysis AlRamadan AS, Galassi RM, Ciottoli PP, Valorani M, Sarathy SM |
258 - 267 |
Influence of m-xylene addition to Jet A-1 on spray structure, flow field and soot production in turbulent swirl-stabilized spray flames in a model combustor Rault TM, Vishwanath RB, Gulder OL |
268 - 274 |
Combustion regime identification from machine learning trained by Raman/Rayleigh line measurements Wan KD, Hartl S, Vervisch L, Domingo P, Barlow RS, Hasse C |
275 - 282 |
Deflagration-to-detonation transition in laser-ignited explosive gas contained in a smooth-wall tube Endo T, Kuwajima S, Kim W, Johzaki T, Shimokuri D, Miyoshi A, Namba S |
283 - 292 |
Structures of laminar lifted flames in a non-premixed jet and their relationship with similarity solutions Hwang GJ, Kim NI |
293 - 311 |
Effects of fuel Lewis number on self-propagating flame spread over thin solid fuels in microgravity Kumar BP, Kumar A |
312 - 326 |
PAH formation from jet stirred reactor pyrolysis of gasoline surrogates Shao C, Kukkadapu G, Wagnon SW, Pitz WJ, Sarathy SM |
327 - 338 |
A DFT study of the mechanism of H transfer during steam gasification Zhao D, Liu H, Lu PC, Yu HY, Qin M |
339 - 348 |
Analysis of mixture stratification effects on unstrained laminar flames Inanc E, Chakraborty N, Kempf AM |
349 - 358 |
Dynamics of combustion waves in narrow samples of solid energetic material: Impact of radiative heat losses on chaotic behavior and dynamical extinction phenomenon Kurdyumov VN, Gubernov VV |
359 - 372 |
RON and MON chemical kinetic modeling derived correlations with ignition delay time for gasoline and octane boosting additives Corrubia JA, Capece JM, Cernansky NP, Miller DL, Durrett RP, Najt PM |
373 - 383 |
Analytical and numerical study of near-field ignition of H-2/air by injection of hot gas Feyz ME, Hasti VR, Gore JP, Nalim MR |
384 - 392 |
Cool flame chemistry of diesel surrogate compounds: n-Decane, 2-methylnonane, 2,7-dimethyloctane, and n-butylcyclohexane Wang ZD, Hansen N, Jasper AW, Chen BJ, Popolan-Vaida DM, Yalamanchi KK, Najjar A, Dagaut P, Sarathy SM |
393 - 404 |
Plasma decay in hydrocarbons and hydrocarbon -and H2O-containing mixtures excited by high-voltage nanosecond discharge at elevated gas temperatures Popov MA, Anokhin EM, Starikovskiy AY, Aleksandrov NL |
405 - 415 |
Parametric transition from deflagration to detonation revisited: Spherical geometry Gordon PV, Kagan L, Sivashinsky G |
416 - 424 |
Classification of the traveling wave solutions for filtration combustion considering thermal losses Zavala RQ, Chapiro G |
425 - 436 |
Experimental investigation of the evaporation of suspended mono-sized heptane droplets in turbulence intensities approaching unity Verwey C, Birouk M |
437 - 448 |
Experimental and model investigation on agglomeration of aluminized fuel-rich propellant in solid fuel ramjet Li LB, Chen X, Zhou CS, Li WX, Zhu M |
449 - 455 |
Pyrolysis study of 1,2,4-trimethylcyclohexane with SVUV-photoionization molecular-beam mass spectrometry Liu YX, Zheng ZH, Tian DX, Tian ZY, Cao CC, Liu ZK, Zhai YT, Zhang Y, Yang JZ |
456 - 466 |
A hierarchical single-pulse shock tube pyrolysis study of C-2-C-6 1-alkenes Nagaraja SS, Liang JH, Dong SJ, Panigrahy S, Sahu A, Kukkadapu G, Wagnon SW, Pitz WJ, Curran HJ |
467 - 477 |
Enhancing combustion performance of nano-Al/PVDF composites with beta-PVDF Huang SD, Hong S, Su YC, Jiang Y, Fukushima S, Gill TM, Yilmaz NED, Tiwari S, Nomura K, Kalia RK, Nakano A, Shimojo F, Vashishta P, Chen ML, Zheng XL |
478 - 487 |
New coordination complexes-based gas-generating energetic composites Wu T, Sevely F, Julien B, Sodre F, Cure J, Tenailleau C, Esteve A, Rossi C |
488 - 488 |
Combustion Performance of Composite Propellants Containing Core-shell Al@M(IO3)(x) Metastable Composites (vol 82, pg 931, 2020) Tang DY, Fan ZM, Yang GC, Wang YL, Liu PJ, Yan QL |