Ignition delay time (IDT) is a useful global metric for fuel performance screening and a major target for kinetic modeling. Measurements of IDT are conceptually straightforward; however, interpretation could be complicated, especially for systems with changing temperature and pressure. Some experimental conditions in the high repetition rate miniature shock tube (HRRST) exhibit complex temperature and pressure state histories. To better interpret and correlate IDTs, especially those obtained in reactors with varying thermodynamic conditions, an inverse Livengood–Wu (L‐W) integral technique is applied to deconvolve the constant condition IDTs from measured IDTs in the HRRST using information on the varying state history. In this paper, the a...
A new procedure to predict both high-temperature stage and cool flames ignition delays under transie...
International audienceExcept in diesel engine applications, auto-ignition is an unwanted event from ...
Understanding the combustion chemistry of ethanol is critical for continued proliferation and use in...
[EN] The ignition characteristics of six different fuels have been correlated as a function of the t...
This paper presents experimental and modeling data for the autoignition of a novel, six-component, h...
A theoretical study about the autoignition phenomenon has been performed in this article. The hypoth...
Ignition delay times (IDT) for high-octane-number gasolines and gasoline surrogates were measured at...
An experimental and theoretical study about the autoignition phenomenon has been performed in this a...
A kinetic mechanism of 1011 elementary reactions with 171 chemical species for n-heptane ignition is...
Gas-phase auto-ignition delay times (IDTs) of methane/“air” (21% O2/79% Ar) mixtures were measured b...
Ignition delay times were measured for gas-phase jet fuel (Jet-A), rocket propellant (RP-1), and die...
Ignition delay data were recorded for three methane-oxygen-argon mixtures (phi = 0.5, 1.0, 2.0) for ...
Single pulse shock tube facility has been developed in the High Temperature Chemical Kinetics Lab, A...
An ignition delay correlation encompassing the effects of temperature, pressure, residual gas, EGR, ...
As an extension to recent experimental methane ignition delay time measurements conducted at diesel ...
A new procedure to predict both high-temperature stage and cool flames ignition delays under transie...
International audienceExcept in diesel engine applications, auto-ignition is an unwanted event from ...
Understanding the combustion chemistry of ethanol is critical for continued proliferation and use in...
[EN] The ignition characteristics of six different fuels have been correlated as a function of the t...
This paper presents experimental and modeling data for the autoignition of a novel, six-component, h...
A theoretical study about the autoignition phenomenon has been performed in this article. The hypoth...
Ignition delay times (IDT) for high-octane-number gasolines and gasoline surrogates were measured at...
An experimental and theoretical study about the autoignition phenomenon has been performed in this a...
A kinetic mechanism of 1011 elementary reactions with 171 chemical species for n-heptane ignition is...
Gas-phase auto-ignition delay times (IDTs) of methane/“air” (21% O2/79% Ar) mixtures were measured b...
Ignition delay times were measured for gas-phase jet fuel (Jet-A), rocket propellant (RP-1), and die...
Ignition delay data were recorded for three methane-oxygen-argon mixtures (phi = 0.5, 1.0, 2.0) for ...
Single pulse shock tube facility has been developed in the High Temperature Chemical Kinetics Lab, A...
An ignition delay correlation encompassing the effects of temperature, pressure, residual gas, EGR, ...
As an extension to recent experimental methane ignition delay time measurements conducted at diesel ...
A new procedure to predict both high-temperature stage and cool flames ignition delays under transie...
International audienceExcept in diesel engine applications, auto-ignition is an unwanted event from ...
Understanding the combustion chemistry of ethanol is critical for continued proliferation and use in...