1 - 4 |
Inevitable chemical effect of balance gas in low temperature plasma assisted combustion Snoeckx R, Cha MS |
5 - 12 |
Shock-induced kinetics and cellular structures of liquid nitromethane detonation Nissen EJ, Bhowmick M, Dlott DD |
13 - 19 |
Experimental investigation on a rotating detonation cycle with burned gas backflow Matsuoka K, Tanaka M, Noda T, Kawasaki A, Kasahara J |
20 - 30 |
Effects of ozone on n-heptane low temperature chemistry and premixed cool flames Brown MQ, Belmont EL |
31 - 38 |
Effect of low-concentration RDX dust on solid-liquid mixed fuel characteristics Liu WJ, Bai CH, Liu QM, Yao J, Zhang C |
39 - 47 |
Sooting characteristics of ethanol-ethylene blends in laminar coflow diffusion flames up to 10 bar Yang SS, Gulder OL |
48 - 56 |
Impacts of lubricating oil and its formulations on diesel engine particle characteristics Wang YS, Chen Y, Liang XY, Tan PQ, Deng SL |
57 - 64 |
Application of 3D energetic metal-organic frameworks containing Cu as the combustion catalyst to composite solid propellant Liu YF, Jin SH, Yang HT, Li SH, Xie WX, Zhao Y, Zhang W, Chen Y, Fan XZ |
65 - 73 |
Laminar burning velocities of methane plus formic acid plus air flames: Experimental and modeling study Lavadera ML, Konnov AA |
74 - 85 |
An assessment on how different collection methods impact thermal properties, surface functional groups, nanostructure and morphology of diesel particulate matter Avila CD, Botero ML, Agudelo AF, Agudelo JR |
86 - 103 |
Plug-flow reactor and shock-tube study of the oxidation of very fuel-rich natural gas/DME/O-2 mixtures Kaczmarek D, Herzler J, Porras S, Shaqiri S, Fikri M, Schulz C, Atakan B, Maas U, Kasper T |
104 - 119 |
Study of pore-scale coke combustion in porous media using lattice Boltzmann method Lei TM, Wang Z, Luo KH |
120 - 135 |
Effects of adding cyclohexane, n-hexane, ethanol, and 2,5-dimethylfuran to fuel on soot formation in laminar coflow n-heptane/iso-octane diffusion flame Chu HQ, Ya YC, Nie XK, Qiao F, Jiaqiang E |
136 - 146 |
Experimental study on combustion and flame spread characteristics in horizontal arrays of discrete fuels Bu RW, Zhou Y, Shi L, Fan CG |
147 - 148 |
Effect of CO2 dilution on forced ignition and development of CH4/air ignition kernels (vol 222, pg 242, 2020) Bonebrake JM, Ombrello TM, Blunck DL |
149 - 159 |
Effect of hydrogen enrichment on the dynamics of a lean technically premixed elevated pressure flame Chterev I, Boxx I |
160 - 179 |
RETRACTION: Application of machine learning for filtered density function closure in MILD combustion (Retraction of Vol 225, Pg 160, 2021) Chen ZX, Iavarone S, Ghiasi G, Kannan V, D'Alessio G, Parente A, Swaminathan N |
180 - 195 |
A statistical model to predict ignition probability Esclapez L, Collin-Bastiani F, Riber E, Cuenot B |
196 - 213 |
Speciation measurements in shock tubes for validation of complex chemical kinetics mechanisms: Application to 2-Methyl-2-Butene oxidation Alturaifi SA, Mulvihill CR, Mathieu O, Petersen EL, Mike J |
214 - 227 |
Experimental characterization and modeling of boundary conditions and flame spread dynamics observed in the UL-94V test Mccoy CG, Stoliarov SI |
228 - 236 |
Autoignition and combustion wave propagation in a spatial reactivity gradient environment constructed using the shock-converging method Yang JT, Hou ZH |
237 - 254 |
Large eddy simulation of the unstable flame structure and gas-to-liquid thermal feedback in a medium-scale methanol pool fire Ahmed MM, Trouve A |
255 - 271 |
An experimental and kinetic modeling study of cyclopentane and dimethyl ether blends Lokachari N, Wagnon SW, Kukkadapu G, Pitz WJ, Curran HJ |
272 - 290 |
A 2-D DNS study of the effects of nozzle geometry, ignition kernel placement and initial turbulence on prechamber ignition Benekos S, Frouzakis CE, Giannakopoulos GK, Altantzis C, Boulouchos K |
291 - 304 |
Combustion mode and wave multiplicity in rotating detonative combustion with separate reactant injection Zhao MJ, Cleary MJ, Zhang HW |
305 - 319 |
Investigation of transient PVC dynamics in a strongly swirled spray flame using high speed planar laser imaging of SnO2 microparticles Vignat G, Durox D, Renaud A, Lancien T, Vicquelin R, Candel S |
320 - 328 |
Nuclear shell model for the ignition process of boron particle with binary surface oxide layer Liang DL, Shen DK, Zhong WD, Wang Y, Liu JZ |
329 - 339 |
High-speed filtered Rayleigh scattering thermometry in premixed flames through narrow channels Krishna Y, Mahuthannan AM, Luo XG, Lacoste DA, Magnotti G |
340 - 348 |
Two ignition transition modes at small and large distances between electrodes of a lean primary reference automobile fuel/air mixture at 373 K with Lewis number >> 1 Shy S, Liao YC, Chen YR, Huang SY |
349 - 363 |
A direct numerical simulation of Jet A flame kernel quenching Krisman A, Meagher P, Zhao XY, Park JW, Lu TF, Chen JH |
364 - 376 |
Mach reflection of a H-2-O-2-Ar detonation wave on the rough wedge based on soot track measurements Zhang Z, Wang CJ, Luo XJ, Guo YZ, Wan Y, Li Q |
377 - 387 |
Understanding how chemical structure affects ignition-delay-time phi-sensitivity Messerly RA, Luecke JH, St John PC, Etz BD, Kim Y, Zigler BT, McCormick RL, Kim S |
388 - 394 |
Exploring chemical kinetics of plasma assisted oxidation of dimethyl ether (DME) Zhang RZ, Liao HD, Yang JZ, Yang B |
395 - 405 |
A novel interaction mechanism in lignin pyrolysis: Phenolics-assisted hydrogen transfer for the decomposition of the beta-O-4 linkage Lu Q, Xie WL, Hu B, Liu J, Zhao W, Zhang B, Wang TP |
406 - 416 |
Microwave-assisted modulation of light emission intensity in alkali-pyrotechnic plumes Barkley SJ, Lynch JE, Miklaszewski EJ, Dilger JM, Crespo WF, Michael JB, Subramaniam S, Sippel TR |
417 - 427 |
Turbulence, evaporation and combustion interactions in n-heptane droplets under high pressure conditions using DNS Wang HO, Luo K, Hawkes ER, Chen JH, Fan JR |
428 - 434 |
3D printed ABS/paraffin hybrid rocket fuels with carbon dots for superior combustion performance Oztan C, Ginzburg E, Akin M, Zhou YQ, Leblanc RM, Coverstone V |
435 - 443 |
Thermo-acoustic flame instability criteria based on upstream reflection coefficients Kojourimanesh M, Kornilov V, Arteaga IL, de Goey P |
444 - 452 |
Modeling third-body effects in the thermal decomposition of H2O2 Matsugi A |
453 - 467 |
Data-driven analysis of relight variability of jet fuels induced by turbulence Hassanaly M, Tang YH, Barwey S, Raman V |
468 - 484 |
Effects of initial temperature on ignition and flame propagation of dual-fuel mixture in mixing layer Zhang XJ, Yuan CW, Zhou L, Zhao WH, Liu ZK, Wei HQ |
485 - 498 |
A theoretical study of the H- and HOO-assisted propen-2-ol tautomerizations: Reactive systems to evaluate collision efficiency definitions on chemically activated reactions using SS-QRRK theory Grajales-Gonzalez E, Monge-Palacios M, King SMS |
499 - 512 |
Flame-acoustics interaction for symmetric and non-symmetric flames propagating in a narrow duct from an open to a closed end Jimenez C, Fernandez-Galisteo D, Kurdyumov VN |
513 - 523 |
Thermoacoustic instability analysis of a laminar lean premixed flame under autoignitive conditions Yu ZM, Ai YH, Wang Y, Luo CZ |
524 - 534 |
First aromatic ring formation by the radical-chain reaction of vinylacetylene and propargyl Jin HF, Xing LL, Liu DP, Hao JY, Yang JZ, Farooq A |
535 - 550 |
Reaction modeling study on the combustion of aluminum in gas phase: The Al + O-2 and related reactions Saba M, Kato T, Oguchi T |