Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation of natural gas blends at high pressure and intermediate to high temperatures. The use of both types of facilities allows a broad temperature envelope to be investigated and therefore encompasses the complete range applicable to gas turbines. A detailed chemical kinetic mechanism has been developed to simulate these results and will be used to approximate similar fuels. Mixtures ofCH4/C2H6/C 3H8/n-C4H10/n-C5H 12 have been studied in the temperature range 630-1550 K, in the pressure range 8-30 bar, and at equivalence ratios of 0.5, 1.0, and 2.0 in air . For shock-tube experiments, the diluent gas was nitrogen, whereas in the RCM experiments th...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3 70/15/15 and 70/2...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
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 CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
Experiments in a rapid compression machine have examined the influences of variations in pressure, t...
The use of natural gas (NG) for transportation and heavy-duty power generation applications has led ...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
The ignition delay times of CH4/C2H6/C3H8 mixtures representative of an average natural gas composit...
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 ...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3 70/15/15 and 70/2...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation ...
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 CH4 and CH4/C2H6 mixtures were studied at pressures relevant to knocking in large b...
Experiments in a rapid compression machine have examined the influences of variations in pressure, t...
The use of natural gas (NG) for transportation and heavy-duty power generation applications has led ...
Shock tube experiments and chemical kinetic modeling were performed to further understand the igniti...
The ignition delay times of CH4/C2H6/C3H8 mixtures representative of an average natural gas composit...
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 ...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
A chemical kinetics mechanism designed for the oxidation of methane-hydrocarbon blends at elevated p...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3 70/15/15 and 70/2...