Chemical reactions in stoichiometric to fuel-rich methane/dimethyl ether/air mixtures (fuel air equiva- lence ratio φ=1–20) were investigated by experiment and simulation with the focus on the conversion of methane to chemically more valuable species through partial oxidation. Experimental data from dif- ferent facilities were measured and collected to provide a large database for developing and validating a reaction mechanism for extended equivalence ratio ranges. Rapid Compression Machine ignition delay times and species profiles were collected in the temperature range between 660 and 1052 K at 10 bar and equivalence ratios of φ= 1–15. Ignition delay times and product compositions were measured in a shock tube at temperatures of 630–1500 ...
Dimethyl Ether (DME) is an oxygenated fuel that could favour the transition of the heavy-duty transp...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
Gas-phase auto-ignition delay times (IDTs) of methane/“air” (21% O2/79% Ar) mixtures were measured b...
Autoignition and oxidation of Methane (CH4) and Dimethyl Ether (DME or CH3OCH3) mixtures in air were...
Autoignition and oxidation of two Methane (CH4) and Dimethyl Ether (CH3OCH3 or DME) mixtures in air ...
Dimethyl ether (DME) is a potential biofuel of interest due to its low sooting potential as well as ...
Journal articleThe development of accurate chemical kinetic models capable of predicting the combust...
Detailed chemical kinetic models are useful tools for the development of more efficient combustion ...
Zhang H, Kaczmarek D, Rudolph C, et al. Dimethyl ether (DME) and dimethoxymethane (DMM) as reaction ...
The oxidation of acetylene (as soot precursor) and dimethyl ether (DME, as a promising fuel additive...
Diethyl ether (DEE) is an interesting species for combustion for at least two reasons: On the one ha...
A chemical kinetic mechanism for the combustion of acetone has been developed and compared with a ra...
The kinetic mechanisms describing the combustion of longer-chain fuels often have limited applicabil...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Dual fuel combustion exhibits a high degree of complexity due to the presence of different fuels lik...
Dimethyl Ether (DME) is an oxygenated fuel that could favour the transition of the heavy-duty transp...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
Gas-phase auto-ignition delay times (IDTs) of methane/“air” (21% O2/79% Ar) mixtures were measured b...
Autoignition and oxidation of Methane (CH4) and Dimethyl Ether (DME or CH3OCH3) mixtures in air were...
Autoignition and oxidation of two Methane (CH4) and Dimethyl Ether (CH3OCH3 or DME) mixtures in air ...
Dimethyl ether (DME) is a potential biofuel of interest due to its low sooting potential as well as ...
Journal articleThe development of accurate chemical kinetic models capable of predicting the combust...
Detailed chemical kinetic models are useful tools for the development of more efficient combustion ...
Zhang H, Kaczmarek D, Rudolph C, et al. Dimethyl ether (DME) and dimethoxymethane (DMM) as reaction ...
The oxidation of acetylene (as soot precursor) and dimethyl ether (DME, as a promising fuel additive...
Diethyl ether (DEE) is an interesting species for combustion for at least two reasons: On the one ha...
A chemical kinetic mechanism for the combustion of acetone has been developed and compared with a ra...
The kinetic mechanisms describing the combustion of longer-chain fuels often have limited applicabil...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Dual fuel combustion exhibits a high degree of complexity due to the presence of different fuels lik...
Dimethyl Ether (DME) is an oxygenated fuel that could favour the transition of the heavy-duty transp...
The oxidation of methane/ethane/propane mixtures, for blends containing 90/6.6/3.3, 70/15/15 and 70/...
Gas-phase auto-ignition delay times (IDTs) of methane/“air” (21% O2/79% Ar) mixtures were measured b...