1 - 13 |
Influence of heat-loss on compressibility-driven flames propagating from the closed end of a long narrow duct Kurdyumov VN, Matalon M |
14 - 24 |
DMMP pyrolysis and oxidation studies at high temperature inside a shock tube using laser absorption measurements of CO Neupane S, Rahman RK, Baker J, Arafin F, Ninnemann E, Thurmond K, Wang CH, Masunov AE, Vasu SS |
25 - 36 |
Morphology and internal structure of soot particles under the influence of jet-swirl and jet-jet interactions in a diesel combustion environment Rao LZ, Zhang YL, Kook S, Kim KS, Kweon CB |
37 - 46 |
Coupled reaction mechanism reduction for the hetero-/homogeneous combustion of syngas over platinum Sui R, Liang WK, Mantzaras J, Law CK |
47 - 56 |
Implications of real-gas behavior on refractive index calculations for optical diagnostics of fuel-air mixing at high pressures Wanstall CT, Agrawal AK, Bittle JA |
57 - 64 |
Effect of premilling Al and CuO in acetonitrile on properties of Al center dot CuO thermites prepared by arrested reactive milling Mursalat M, Schoenitz M, Dreizin EL |
65 - 79 |
Characterization of renewable diesel particulate matter gathered from non-premixed and partially premixed flame burners and from a diesel engine Cadrazco M, Santamaria A, Jaramillo IC, Kaur K, Kelly KE, Agudelo JR |
80 - 89 |
Effect of Al content and particle size on the combustion of HMX-CMDB propellant Xiao LQ, Fan XZ, Li JZ, Qin Z, Fu XL, Pang WQ, Wang Y |
90 - 102 |
Laser ignition in supersonic channel flow Ochs BA, Menon S |
103 - 115 |
Towards quantitative prediction of ignition-delay-time sensitivity on fuel-to-air equivalence ratio Messerly RA, Rahimi MJ, St John PC, Luecke JH, Park JW, Huq NA, Foust TD, Lu TF, Zigler BT, McCormick RL, Kim S |
116 - 120 |
A particle mass-based implementation for mixing models with differential diffusion Yang TW, Zhou H, Ren ZY |
121 - 135 |
A numerical study on combustion mode characterization for locally stratified dual-fuel mixtures Karimkashi S, Kahila H, Kaario O, Larmi M, Vuorinen V |
136 - 138 |
Experimental evidence of H-2/O-2 propellants powered rotating detonation waves Sosa J, Burke R, Ahmed KA, Micka DJ, Bennewitz JW, Danczyk SA, Paulson EJ, Hargus WA |
139 - 151 |
Pressure-dependent kinetics on benzoyl radical + O-2 and its implications for low temperature oxidation of benzaldehyde Zhao Q, Zhang YJ, Zhang F, Huang ZH |
152 - 166 |
Fuel molecular structure effect on autoignition of highly branched iso-alkanes at low-to-intermediate temperatures: Iso-octane versus iso-dodecane Fang RZ, Kukkadapu G, Wang MY, Wagnon SW, Zhang KW, Mehl M, Westbrook CK, Pitz WJ, Sung CJ |
167 - 183 |
Impact of ethanol on oxidation of iso-octane at low and intermediate temperatures Lu ZQ, Yang Y, Brear MJ |
184 - 198 |
An extensive study on skeletal mechanism reduction for the oxidation of C-0-C-4 fuels Xue J, Xi SH, Wang F |
199 - 210 |
Droplet combustion behavior of oxidatively degraded methyl laurate and methyl oleate in microgravity Ando S, Wu YX, Nakaya S, Tsue M |
211 - 223 |
Experimental and kinetic modeling investigation on ethylcyclohexane low-temperature oxidation in a jet-stirred reactor Zou JB, Zhang XY, Li YY, Ye LL, Xing LL, Li W, Cao CC, Zhai YT, Qi F, Yang JZ |
224 - 237 |
Detailed modeling of a small-scale turbulent pool fire Wu BF, Roy SP, Zhao XY |
238 - 250 |
Atomistic insight into the microexplosion-accelerated oxidation process of molten aluminum nanoparticles Li G, Niu LL, Hao WZ, Liu Y, Zhang CY |
251 - 262 |
Intrinsic thermoacoustic modes in an annular combustion chamber Buschmann PE, Mensah GA, Moeck JP |
263 - 265 |
Simultaneous lateral and endwall high-speed visualization of ignition in a circular shock tube Figueroa-Labastida M, Farooq A |
266 - 276 |
Suppression of instabilities of swirled premixed flames with minimal secondary hydrogen injection Oztarlik G, Selle L, Poinsot T, Schuller T |
277 - 286 |
Influence of ozone addition on the low-temperature oxidation of dimethyl ether in a jet-stirred reactor Liao HD, Kang SQ, Hansen N, Zhang F, Yang B |
287 - 305 |
Physically-derived reduced-order manifold-based modeling for multi-modal turbulent combustion Mueller ME |
306 - 322 |
Experimental comparison of combustion and emission characteristics between a market gasoline and its surrogate Esposito S, Cai LM, Gunther M, Pitsch H, Pischinger S |
323 - 335 |
Assessment of the stabilization mechanisms of turbulent lifted jet flames at elevated pressure using combined 2-D diagnostics Guiberti TF, Boyette WR, Krishna Y, Roberts WL, Masri AR, Magnotti G |
336 - 345 |
Determination of temperature and water-concentration in fuel-rich oxy-fuel methane flames applying TDLAS Sentko MM, Schulz S, Stelzner B, Anderlohr C, Vicari M, Trimis D |
346 - 357 |
Computational study on self-heating ignition and smouldering spread of coal layers in flat and wedge hot plate configurations Yuan H, Restuccia F, Rein G |
358 - 360 |
Simultaneous measurement of CO and OH in flames using a single broadband, femtosecond laser pulse Wang YJ, Jain A, Kulatilaka W |
361 - 370 |
Influence of soil conditions on the multidimensional spread of smouldering combustion in shallow layers Christensen EG, Fernandez-Anez N, Rein G |
371 - 386 |
Relationship of flame propagation and combustion mode transition of end-gas based on pressure wave in confined space Zhang XJ, Wei HQ, Zhou L, Cai XD, Deiterding R |
387 - 393 |
Pulsed laser irradiation of a nanoparticles sensitised RDX crystal Fang X, Stone M, Stennett C |
394 - 406 |
A theoretical investigation on Bell-Evans-Polanyi correlations for hydrogen abstraction reactions of large biodiesel molecules by H and OH radicals Meng QH, Lin X, Zhai YT, Zhang LD, Zhang P, Sheng LS |
407 - 418 |
Effects of scaling laws on the combustion and NOx characteristics of hydrogen burners Meraner C, Li T, Ditaranto M, Lovas T |
419 - 425 |
An effective way to enhance energy output and combustion characteristics of Al/PTFE Wang J, Zhang L, Mao YF, Gong FY |
426 - 436 |
Additive-promoted hypergolic ignition of ionic liquid with hydrogen peroxide Bhosale VK, Jeong J, Choi J, Churchill DG, Lee Y, Kwon S |
437 - 449 |
DNS-driven analysis of the Flamelet/Progress Variable model assumptions on soot inception, growth, and oxidation in turbulent flames Wick A, Attili A, Bisetti F, Pitsch H |
450 - 463 |
Systematic assessment of the Method of Moments with Interpolative Closure and guidelines for its application to soot particle dynamics in laminar and turbulent flames Wick A, Frenklach M, Pitsch H |
464 - 474 |
Laminar flame speed, Markstein length, and cellular instability for spherically propagating methane/ethylene-air premixed flames Kim HJ, Van K, Lee DK, Yoo CS, Park J, Chung SH |