The oxidation of methane/propane mixtures in air has been studied for blends containing 90% CH4/10% C3H8 and 70% CH4/30% C3H8 in the temperature range 740-1550 K, at compressed gas pressures of 10, 20 and 30 atm, and at varying equivalence ratios of 0.3, 0.5, 1.0, 2.0 and 3.0 in a high-pressure shock tube and in a rapid compression machine. These data are consistent with other experiments presented in the literature for other alkane fuels in that, when ignition delay times are plotted as a function of temperature, a characteristic negative coefficient behavior is observed, particularly for mixtures containing 30% propane. In addition, the results were simulated using a detailed chemical kinetic model. It was found that qualitatively, the ...
Ignition delay time measurements for multi-component natural gas mixtures were carried out using a r...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
The oxidation of methane/propane mixtures in air has been studied for blends containing 90% CH4/10...
The oxidation of methane/propane Mixtures in air has been Studied for blends containing 90% CH(4)/...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3 70/15/15 and 70/2...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignit...
Our understanding of fuel oxidation has improved with rigorous experimental and theoretical investig...
The oxidation of CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
Propane and n-Butane are the smaller and simpler hydrocarbons that already show the different behavi...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Ignition delay time measurements for multi-component natural gas mixtures were carried out using a r...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
The oxidation of methane/propane mixtures in air has been studied for blends containing 90% CH4/10...
The oxidation of methane/propane Mixtures in air has been Studied for blends containing 90% CH(4)/...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3 70/15/15 and 70/2...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignit...
Our understanding of fuel oxidation has improved with rigorous experimental and theoretical investig...
The oxidation of CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
Propane and n-Butane are the smaller and simpler hydrocarbons that already show the different behavi...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Ignition delay time measurements for multi-component natural gas mixtures were carried out using a r...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...