Journal articleThis work presents an updated experimental and kinetic modeling study of n-heptane oxidation. In the experiments, ignition delay times of stoichiometric n-heptaneiair mixtures have been measured in two different high-pressure shock tubes in the temperature range of 726-1412 K and at elevated pressures (15, 20 and 38 bar). Meanwhile, concentration versus time profiles of species have been measured in a jet-stirred reactor at atmospheric pressure, in the temperature range of 500-1100K at phi=0.25, 2.0 and 4.0. These experimental results are consistent with those from the literature at similar conditions and extend the current data base describing n-heptane oxidation.Based on our experimental observations and previous modeling w...
The aim of this work is to generate a detailed mechanism for the oxidation of a mixture of n-heptane...
This paper prestens a reduced detailed kinetic mechanism for 1006 reactions involving 134 chemical s...
Ruwe L, Cai L, Wullenkord J, et al. Low- and high-temperature study of n-heptane combustion chemistr...
This paper presents a semi-detailed kinetic scheme for n-heptane oxidation. Both the low and high te...
The low- and high-temperature oxidation mechanisms of n-heptane have been extensively studied in rec...
Ignition delay times for n-hexane oxidation have been measured in a rapid compression machine (RCM) ...
Alkanes are key components in gasoline, jet and diesel fuels and considerably influence the combusti...
A detailed chemical kinetic reaction mechanism is used to study the oxidation of n-heptane under sev...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
The chemical kinetics of n-heptane (n-C7H16) – an important reference compound for real fuels – oxid...
Journal articleThis paper presents experimental data for the oxidation of two surrogates for the lar...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of iso-octa...
A reduced kinetic model for the combustion of n-heptane, i-octane, n-cetane and heptamethylnonane wa...
The low- and high-temperature oxidation mechanisms of <i>n</i>-heptane have been extensively studied...
Journal articleAlkyl aromatics are an important chemical class in gasoline, jet and diesel fuels. In...
The aim of this work is to generate a detailed mechanism for the oxidation of a mixture of n-heptane...
This paper prestens a reduced detailed kinetic mechanism for 1006 reactions involving 134 chemical s...
Ruwe L, Cai L, Wullenkord J, et al. Low- and high-temperature study of n-heptane combustion chemistr...
This paper presents a semi-detailed kinetic scheme for n-heptane oxidation. Both the low and high te...
The low- and high-temperature oxidation mechanisms of n-heptane have been extensively studied in rec...
Ignition delay times for n-hexane oxidation have been measured in a rapid compression machine (RCM) ...
Alkanes are key components in gasoline, jet and diesel fuels and considerably influence the combusti...
A detailed chemical kinetic reaction mechanism is used to study the oxidation of n-heptane under sev...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
The chemical kinetics of n-heptane (n-C7H16) – an important reference compound for real fuels – oxid...
Journal articleThis paper presents experimental data for the oxidation of two surrogates for the lar...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of iso-octa...
A reduced kinetic model for the combustion of n-heptane, i-octane, n-cetane and heptamethylnonane wa...
The low- and high-temperature oxidation mechanisms of <i>n</i>-heptane have been extensively studied...
Journal articleAlkyl aromatics are an important chemical class in gasoline, jet and diesel fuels. In...
The aim of this work is to generate a detailed mechanism for the oxidation of a mixture of n-heptane...
This paper prestens a reduced detailed kinetic mechanism for 1006 reactions involving 134 chemical s...
Ruwe L, Cai L, Wullenkord J, et al. Low- and high-temperature study of n-heptane combustion chemistr...