1541 - 1549 |
A shock tube and kinetic modeling study of n-butanal oxidation Zhang JX, Pan L, Mo J, Gong J, Huang ZH, Law CK |
1550 - 1558 |
Constrained reaction volume approach for studying chemical kinetics behind reflected shock waves Hanson RK, Pang GA, Chakraborty S, Ren W, Wang SK, Davidson DF |
1559 - 1571 |
Shock tube measurements and model development for morpholine pyrolysis and oxidation at high pressures Li SJ, Davidson DF, Hanson RK, Labbe NJ, Westmoreland PR, Osswald P, Kohse-Hoinghaus K |
1572 - 1582 |
Comparison of different DRG-based methods for the skeletal reduction of JP-8 surrogate mechanisms Tosatto L, Bennett BAV, Smooke MD |
1583 - 1593 |
Uncertainty quantification of reaction mechanisms accounting for correlations introduced by rate rules and fitted Arrhenius parameters Prager J, Najm HN, Sargsyan K, Safta C, Pitz WJ |
1594 - 1608 |
Measurements of temperature and hydroxyl radical generation/decay in lean fuel-air mixtures excited by a repetitively pulsed nanosecond discharge Yin ZY, Montello A, Carter CD, Lempert WR, Adamovich IV |
1609 - 1626 |
Experimental and modeling study of the oxidation of n- and iso-butanal Veloo PS, Dagaut P, Togbe C, Dayma G, Sarathy SM, Westbrook CK, Egolfopoulos FN |
1627 - 1635 |
The effect of elevated pressures on the laminar burning velocity of methane plus air mixtures Goswami M, Derks SCR, Coumans K, Slikker WJ, Oliveira MHD, Bastiaans RJM, Luijten CCM, de Goey LPH, Konnov AA |
1636 - 1649 |
Numerical study of CO and CO2 formation in CH4/H-2 blended flame under MILD condition Mardani A, Tabejamaat S, Hassanpour S |
1650 - 1656 |
Sooting behaviour of n-heptane laminar diffusion flames at high pressures Karatas AE, Intasopa G, Guelder OL |
1657 - 1666 |
Numerical modeling of sooting tendencies in a laminar co-flow diffusion flame Xuan Y, Blanquart G |
1667 - 1676 |
A PAH growth mechanism and synergistic effect on PAH formation in counterflow diffusion flames Wang Y, Raj A, Chung SH |
1677 - 1692 |
Lean blowoff behavior of asymmetrically-fueled bluff body-stabilized flames Tuttle SG, Chaudhuri S, Kopp-Vaughan KM, Jensen TR, Cetegen BM, Renfro MW, Cohen JM |
1693 - 1705 |
Soot temperature and volume fraction retrieval from spectrally resolved flame emission measurement in laminar axisymmetric coflow diffusion flames: Effect of self-absorption Liu FS, Thomson KA, Smallwood GJ |
1706 - 1716 |
Direct numerical simulation of lean hydrogen/air auto-ignition in a constant volume enclosure Yu RX, Bai XS |
1717 - 1724 |
Autoignited and non-autoignited lifted flames of pre-vaporized n-heptane in coflow jets at elevated temperatures Choi SK, Chung SH |
1725 - 1728 |
An experimental study of distorted tulip flame formation in a closed duct Xiao HH, Wang QS, Shen XB, Guo S, Sun JH |
1729 - 1742 |
Flame dynamics of a variable swirl number system and instability control Durox D, Moeck JP, Bourgouin JF, Morenton P, Viallon M, Schuller T, Candel S |
1743 - 1754 |
Combining a Helmholtz solver with the flame describing function to assess combustion instability in a premixed swirled combustor Silva CF, Nicoud F, Schuller T, Durox D, Candel S |
1755 - 1766 |
High pressure ignition kernel development and minimum ignition energy measurements in different regimes of premixed turbulent combustion Peng MW, Shy S, Shiu YW, Liu CC |
1767 - 1778 |
Measurements and statistics of mixture fraction and scalar dissipation rates in turbulent non-premixed jet flames Sutton JA, Driscoll JF |
1779 - 1788 |
Reconstruction of heat release rate disturbances based on transmission of ultrasounds: Experiments and modeling for perturbed flames Li JX, Richecoeur F, Schuller T |
1789 - 1802 |
Effects of size on combustion of isolated methanol droplets Awasthi I, Gogos G, Sundararajan T |
1803 - 1811 |
Experimental study of droplet temperature in a two-phase heptane/air V-flame Letty C, Renou B, Reveillon J, Saengkaew S, Grehan G |
1812 - 1826 |
Structural effects on the oxidation of soot particles by O-2: Experimental and theoretical study Raj A, Yang SY, Cha D, Tayouo R, Chung SH |
1827 - 1834 |
Numerical assessment of Tognotti determination of CO2/CO production ratio during char oxidation Shaddix CR, Holzleithner F, Geier M, Haynes BS |
1835 - 1841 |
The effect of doping on the combustion and reaction kinetics of silicon reactives Yarrington CD, Groven LJ, Reeves RV, Son SF |
1842 - 1847 |
Spatial and temporal control of on-demand propane-air flame ignition by active photothermal effect of aluminum nanoenergetics Abboud JE, Jiang NB, Zhang ZL, Roy S, Gord JR |
1848 - 1856 |
Multiple-diffusion flame synthesis of pure anatase and carbon-coated titanium dioxide nanoparticles Memon NK, Anjum DH, Chung SH |
1857 - 1869 |
A generalized reduced model of uniform and self-propagating reactions in reactive nanolaminates Alawieh L, Weihs TP, Knio OM |
1870 - 1875 |
Pyrophoricity of nascent and passivated aluminum particles at nano-scales Sundaram DS, Puri P, Yang V |
1876 - 1882 |
Towards better combustion of lunar regolith with magnesium Delgado A, Shafirovich E |
1883 - 1899 |
Multi-phase simulation of ammonium nitrate emulsion detonations Schoch S, Nikiforakis N, Lee BJ, Saurel R |
1900 - 1902 |
Extinction limits of spreading flames over wires in microgravity Takahashi S, Ito H, Nakamura Y, Fujita O |
1903 - 1905 |
A new methodology to incorporate differential diffusion in CFD simulations of reactive flows Maragkos G, Rauwoens P, Merci B |