411 - 420 |
Kinetic effects of toluene blending on the extinction limit of n-decane diffusion flames Won SH, Sun WT, Ju YG |
421 - 435 |
Methane ignition catalyzed by in situ generated palladium nanoparticles Shimizu T, Abid AD, Poskrebyshev G, Wang H, Nabity J, Engel J, Yu J, Wickham D, Van Devener B, Anderson SL, Williams S |
436 - 445 |
Simulation of reactive nanolaminates using reduced models: II. Normal propagation Salloum M, Knio OM |
446 - 454 |
The effect of a shock wave on the ignition behavior of aluminum particles in a shock tube Schloffel G, Eichhorn A, Albers H, Mundt C, Seiler F, Zhang F |
455 - 464 |
Systematically reduced rate mechanisms and presumed PDF models for premixed turbulent combustion Bray K, Champion M, Libby PA |
465 - 475 |
A filtered tabulated chemistry model for LES of premixed combustion Fiorina B, Vicquelin R, Auzillon P, Darabiha N, Gicquel O, Veynante D |
476 - 480 |
Experimental flame speed in multi-layered nano-energetic materials Manesh NA, Basu S, Kumar R |
481 - 494 |
Experimental and theoretical investigation of heat and mass transfer processes during wood pyrolysis Park WC, Atreya A, Baum HR |
495 - 505 |
Oxidation chemistry of cyclic hydrocarbons in a motored engine: Methylcyclopentane, tetralin, and decalin Yang Y, Boehman AL |
506 - 515 |
Numerical analysis of reaction-diffusion effects on species mixing rates in turbulent premixed methane-air combustion Richardson ES, Sankaran R, Grout RW, Chen JH |
516 - 522 |
Wide-angle light scattering (WALS) for soot aggregate characterization Oltmann H, Reimann J, Will S |
523 - 534 |
A study on the coagulation of polycyclic aromatic hydrocarbon clusters to determine their collision efficiency Raj A, Sander M, Janardhanan V, Kraft M |
535 - 539 |
Effect of reactivity loss on apparent reaction order of burning char particles Murphy JJ, Shaddix CR |
540 - 545 |
The simulation of the combustion of micrometer-sized aluminum particles with oxygen and carbon dioxide Washburn EB, Webb JA, Beckstead MW |
546 - 555 |
Experimental study of the autoignition of C8H16O2 ethyl and methyl esters in a motored engine Zhang Y, Boehman AL |
556 - 565 |
Formation and consumption of NO in H-2 + O-2 + N-2 flames doped with NO or NH3 at atmospheric pressure Shmakov AG, Korobeinichev OP, Rybitskaya IV, Chernov AA, Knyazkov DA, Bolshova TA, Konnov AA |
566 - 578 |
Large eddy simulation of extinction and reignition with artificial neural networks based chemical kinetics Sen BA, Hawkes ER, Menon S |
579 - 601 |
Large eddy simulation of forced ignition of an annular bluff-body burner Subramanian V, Domingo P, Vervisch L |
602 - 615 |
Modeling of the chemical-looping combustion of methane using a Cu-based oxygen-carrier Abad A, Adanez J, Garcia-Labiano F, de Diego LF, Gayan P |