New chemical kinetic reaction mechanisms are developed for two of the five major components of biodiesel fuel, methyl stearate and methyl oleate. The mechanisms are produced using existing reaction classes and rules for reaction rates, with additional reaction classes to describe other reactions unique to methyl ester species. Mechanism capabilities were examined by computing fuel/air autoignition delay times and comparing the results with more conventional hydrocarbon fuels for which experimental results are available. Additional comparisons were carried out with measured results taken from jet-stirred reactor experiments for rapeseed methyl ester fuels. In both sets of computational tests, methyl oleate was found to be slightly less react...
In this study, skeletal mechanisms are produced by directed relation graph with specified threshold ...
The biodiesel surrogate fuels are realistic kinetic tools to study the combustion of actual biodiese...
Diesel–biodiesel–ethanol blends have been the focus of research in engines, as biodiesel and ethanol...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of methyl d...
Methyl oleate is a long chain methyl ester and a major constituent of rapeseed-oil derived biodiesel...
International audienceThe oxidation of three C19 fatty acid methyl esters present in biodiesel fuel ...
Thermodynamic properties and detailed chemical kinetic models have been developed for the combustion...
The aim of this work is to discuss a lumped approach to the kinetic modeling of the pyrolysis and ox...
Biodiesel has been considered the most promising fuel to replace part of the fossil diesel consumed ...
In times where the attention on alternative energy sources is continuously increasing, the study of ...
Westbrook CK, Pitz WJ, Westmoreland PR, et al. A detailed chemical kinetic reaction mechanism for ox...
Biodiesel is a mixture of long chain fatty acid methyl esters derived from fats and oils. This resea...
In an attempt to construct detailed kinetic mechanisms for biodiesel fuels on the fly, high-pressure...
The high pressure and temperature oxidation of methyl <i>trans</i>-2-nonenoate, methyl <i>trans</i>-...
Methyl palmitate is a long-chain methyl ester and a major constituent of palm-oil-derived biodiesel....
In this study, skeletal mechanisms are produced by directed relation graph with specified threshold ...
The biodiesel surrogate fuels are realistic kinetic tools to study the combustion of actual biodiese...
Diesel–biodiesel–ethanol blends have been the focus of research in engines, as biodiesel and ethanol...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of methyl d...
Methyl oleate is a long chain methyl ester and a major constituent of rapeseed-oil derived biodiesel...
International audienceThe oxidation of three C19 fatty acid methyl esters present in biodiesel fuel ...
Thermodynamic properties and detailed chemical kinetic models have been developed for the combustion...
The aim of this work is to discuss a lumped approach to the kinetic modeling of the pyrolysis and ox...
Biodiesel has been considered the most promising fuel to replace part of the fossil diesel consumed ...
In times where the attention on alternative energy sources is continuously increasing, the study of ...
Westbrook CK, Pitz WJ, Westmoreland PR, et al. A detailed chemical kinetic reaction mechanism for ox...
Biodiesel is a mixture of long chain fatty acid methyl esters derived from fats and oils. This resea...
In an attempt to construct detailed kinetic mechanisms for biodiesel fuels on the fly, high-pressure...
The high pressure and temperature oxidation of methyl <i>trans</i>-2-nonenoate, methyl <i>trans</i>-...
Methyl palmitate is a long-chain methyl ester and a major constituent of palm-oil-derived biodiesel....
In this study, skeletal mechanisms are produced by directed relation graph with specified threshold ...
The biodiesel surrogate fuels are realistic kinetic tools to study the combustion of actual biodiese...
Diesel–biodiesel–ethanol blends have been the focus of research in engines, as biodiesel and ethanol...