41 |
Uncertainty-quantification analysis of the effects of residual impurities on hydrogen-oxygen ignition in shock tubes Urzay J, Kseib N, Davidson DF, Iaccarino G, Hanson RK Combustion and Flame, 161(1), 1, 2014 |
42 |
Shock tube study of the pressure dependence of monomethylhydrazine pyrolysis Li SJ, Davidson DF, Hanson RK Combustion and Flame, 161(1), 16, 2014 |
43 |
Pyrolysis and oxidation of decalin at elevated pressures: A shock-tube study Zhu Y, Davidson DF, Hanson RK Combustion and Flame, 161(2), 371, 2014 |
44 |
1-Butanol ignition delay times at low temperatures: An application of the constrained-reaction-volume strategy Zhu YY, Davidson DF, Hanson RK Combustion and Flame, 161(3), 634, 2014 |
45 |
An improved kinetic mechanism for 3-pentanone pyrolysis and oxidation developed using multispecies time histories in shock-tubes Dames EE, Lam KY, Davidson DF, Hanson RK Combustion and Flame, 161(5), 1135, 2014 |
46 |
Shock tube study of ethylamine pyrolysis and oxidation Li SJ, Davidson DF, Hanson RK Combustion and Flame, 161(10), 2512, 2014 |
47 |
Shock tube measurements of branched alkane ignition delay times Li SJ, Campos A, Davidson DF, Hanson RK Fuel, 118, 398, 2014 |
48 |
Ignition delay times of very-low-vapor-pressure biodiesel surrogates behind reflected shock waves Campbell MF, Davidson DF, Hanson RK Fuel, 126, 271, 2014 |
49 |
Pyrolysis study of conventional and alternative fuels behind reflected shock waves Li SJ, Zhu YY, Davidson DF, Hanson RK Fuel, 132, 170, 2014 |
50 |
A comparative study of the chemical kinetics of methyl and ethyl propanoate Farooq A, Davidson DF, Hanson RK, Westbrook CK Fuel, 134, 26, 2014 |