21 |
A physics based approach to modeling real-fuel combustion chemistry - IV. HyChem modeling of combustion kinetics of a bio-derived jet fuel and its blends with a conventional Jet A Wang K, Xu R, Parise T, Shao J, Movaghar A, Lee DJ, Park JW, Gao Y, Lu TF, Egolfopoulos FN, Davidson DF, Hanson RK, Bowman CT, Wang H Combustion and Flame, 198, 477, 2018 |
22 |
A shock tube study of jet fuel pyrolysis and ignition at elevated pressures and temperatures Shao JK, Zhu YY, Wang SK, Davidson DF, Hanson RK Fuel, 226, 338, 2018 |
23 |
A shock tube study of ignition delay times in diluted methane, ethylene, propene and their blends at elevated pressures Shao JK, Davidson DF, Hanson RK Fuel, 225, 370, 2018 |
24 |
Compact optical probe for flame temperature and carbon dioxide using interband cascade laser absorption near 4.2 mu m Girard JJ, Spearrin RM, Goldenstein CS, Hanson RK Combustion and Flame, 178, 158, 2017 |
25 |
A new diagnostic for hydrocarbon fuels using 3.41-mu m diode laser absorption Wang SK, Parise T, Johnson SE, Davidson DF, Hanson RK Combustion and Flame, 186, 129, 2017 |
26 |
Chemical kinetic modeling and shock tube study of methyl propanoate decomposition Ning HB, Wu JJ, Ma LH, Ren W, Davidson DF, Hanson RK Combustion and Flame, 184, 30, 2017 |
27 |
Toward a better understanding of 2-butanone oxidation: Detailed species measurements and kinetic modeling Hemken C, Burke U, Lam KY, Davidson DF, Hanson RK, Heufer KA, Kohse-Hoinghaus K Combustion and Flame, 184, 195, 2017 |
28 |
Ignition delay time correlations for distillate fuels Davidson DF, Zhu Y, Shao J, Hanson RK Fuel, 187, 26, 2017 |
29 |
Combined Ab lnitio, Kinetic Modeling, and Shock Tube Study of the Thermal Decomposition of Ethyl Formate Ning HB, Wu JJ, Ma LH, Ren W, Davidson DF, Hanson RK Journal of Physical Chemistry A, 121(35), 6568, 2017 |
30 |
Shock Tube and Laser Absorption Study of CH2O Oxidation via Simultaneous Measurements of OH and CO Wang SK, Davidson DF, Hanson RK Journal of Physical Chemistry A, 121(45), 8561, 2017 |