The oxidation of CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large bore natural gas engines. The experiments were carried out in a rapid compression machine (RCM) at end of compression (EOC) temperatures ranging between 885 and 940 K at compressed gas pressures of 105, 125, 150, and 160 bar at varying equivalence ratios (0.417, 0.526, and 1.0) and dilution percentages (0, 10, and 30% Exhaust Gas Recirculation - EGR) that were defined in a test matrix. This study describes the method and limitations of performing high-pressure experiments of this magnitude in an RCM, modeling, and validation of the kinetic mechanism against experimental data. While the recently published AramcoMech 2.0 could well predict the i...
The autoignition and oxidation behavior of CH4/H2S mixtures has been studied experimentally in a rap...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
The oxidation of CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
The autoignition and oxidation behavior of CH<sub>4</sub>/H<sub>2</sub>S mixtures has been studied e...
Dual fuel combustion exhibits a high degree of complexity due to the presence of different fuels lik...
The oxidation of methane/propane mixtures in air has been studied for blends containing 90% CH4/10...
Several, modern, detailed chemical kinetics mechanisms available in the literature are compared to e...
The oxidation of methane/propane Mixtures in air has been Studied for blends containing 90% CH(4)/...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Journal articleThis study presents new ignition delay data measured in a rapid compression machine o...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
The autoignition and oxidation behavior of CH4/H2S mixtures has been studied experimentally in a rap...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
The oxidation of CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
The autoignition and oxidation behavior of CH<sub>4</sub>/H<sub>2</sub>S mixtures has been studied e...
Dual fuel combustion exhibits a high degree of complexity due to the presence of different fuels lik...
The oxidation of methane/propane mixtures in air has been studied for blends containing 90% CH4/10...
Several, modern, detailed chemical kinetics mechanisms available in the literature are compared to e...
The oxidation of methane/propane Mixtures in air has been Studied for blends containing 90% CH(4)/...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Journal articleThis study presents new ignition delay data measured in a rapid compression machine o...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
The autoignition and oxidation behavior of CH4/H2S mixtures has been studied experimentally in a rap...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...