319 - 330 |
Counterflow diffusion flames of general fluids: Oxygen/hydrogen mixtures Ribert G, Zong N, Yang V, Pons L, Darabiha N, Candel S |
331 - 345 |
Experimental study on transmission of an overdriven detonation wave from propane/oxygen to propane/air Li J, Lai WH, Chung K, Lu FK |
346 - 355 |
Soot precursor measurements in benzene and hexane diffusion flames Kobayashi Y, Furuhata T, Amagai K, Arai M |
356 - 367 |
The nonlinear response of inverted "V" flames to equivalence ratio nonuniformities Birbaud AL, Ducruix S, Durox D, Candel S |
368 - 377 |
Synergistic effect of mixing dimethyl ether with methane, ethane, propane, and ethylene fuels on polycyclic aromatic hydrocarbon and soot formation Yoon SS, Anh DH, Chung SH |
378 - 386 |
Boundary layer modeling of reactive flow over a porous surface with angled injection Liu SL, Fotache CG, Chao BH, Hautman DJ, Ochs SS |
387 - 409 |
Spectroscopic and chemical-kinetic analysis of the phases of HCCI autoignition and combustion for single- and two-stage ignition fuels Hwang W, Dec J, Sjoberg M |
410 - 433 |
Reduced mechanism for the combustion of evolved gases in forest fires Leroy V, Leoni E, Santoni PA |
434 - 447 |
Measurements of the heat release rate integral in turbulent premixed stagnation flames with particle image velocimetry Chen YC, Kim M, Han J, Yun S, Yoon Y |
448 - 461 |
Insights on postinjection-associated soot emissions in direct injection diesel engines Arregle J, Pastor JV, Lopez JJ, Garcia A |
462 - 472 |
Methodology development of a time-resolved in-cylinder fuel oxidation analysis: Homogeneous charge compression ignition combustion study application Nowak L, Guibert P, Cavadias S, Dupre S, Momique JC |
473 - 477 |
Catalytic thermal decomposition and combustion of composite BAMO-THF propellants Zhai JX, Yang RJ, Li JM |
478 - 488 |
Numerical study of ground-level distribution of firebrands generated by line fires Sardoy N, Consalvi JL, Kaiss A, Fernandez-Pello AC, Porterie B |
489 - 506 |
A mechanistic investigation of a calcium-based oxygen carrier for chemical looping combustion Shen LH, Zheng M, Xiao J, Xiao R |
507 - 528 |
Detailed chemical kinetic oxidation mechanism for a biodiesel surrogate Herbinet O, Pitz WJ, Westbrook CK |
529 - 545 |
Sensitizing effects of NOx on CH4 oxidation at high pressure Rasmussen CL, Rasmussen AE, Glarborg P |
546 - 556 |
Soot inception limits in laminar diffusion flames with application to oxy-fuel combustion Kumfer BM, Skeen SA, Axelbaum RL |
557 - 568 |
Numerical studies of heterogeneous reaction in stagnation flows using one-dimensional and two-dimensional Cartesian models Yuan T, Lai YH, Chang CK |
569 - 586 |
Kinetics of ignition of saturated hydrocarbons by nonequilibrium plasma: CH4-containing mixtures Kosarev IN, Aleksandrov NL, Kindysheva SV, Starikovskaia SM, Starikovskii AY |
587 - 600 |
Combustion characteristics of nanoaluminum, liquid water, and hydrogen peroxide mixtures Sabourin JL, Risha GA, Yetter RA, Son SF, Tappan BC |
601 - 623 |
Experimental and numerical investigation of low-pressure laminar premixed synthetic natural gas/O-2/N-2 and natural gas/H-2/O-2/N-2 flames De Ferrieres S, El Bakali A, Lefort B, Montero M, Pauwels JF |
624 - 629 |
Phenomenology of electrostatically charged droplet combustion in normal gravity Anderson EK, Koch JA, Kyritsis DC |
630 - 636 |
Towards accurate kinetic modeling of prompt NO formation in hydrocarbon flames via the NCN pathway Sutton JA, Fleming JW |