The effects of fuel composition, thermal stratification, and turbulence on the ignition of lean homogeneous primary reference fuel (PRF)/air mixtures under the conditions of constant volume and elevated pressure are investigated by direct numerical simulations (DNSs) with a new 116-species reduced kinetic mechanism. Two-dimensional DNSs were performed in a fixed volume with a two-dimensional isotropic velocity spectrum and temperature fluctuations superimposed on the initial scalar fields with different fuel compositions to elucidate the influence of variations in the initial temperature fluctuation and turbulence intensity on the ignition of three different lean PRF/air mixtures. In general, it was found that the mean heat release rate inc...
Chemical aspects of the ignition of a primary reference fuel (PRF)/air mixture under reactivity cont...
Two-dimensional direct numerical simulation (2-D DNS) is used to investigate the effect of turbulenc...
Numerical simulations are performed to study the nature of auto-ignition and flame propagation in a ...
Two-dimensional direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)...
Direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)/air mixtures un...
The effect of thermal stratification, spark-ignition, and turbulence on the ignition of a lean homog...
The ignition characteristics of a lean primary reference fuel (PRF)/air mixture under reactivity con...
The effects of the stratifications of temperature, T, and equivalence ratio, ??{symbol}, on the igni...
The effect of thermal stratification on the ignition of a lean homogeneous n-heptane/air mixture at ...
The effects of temperature and composition stratifications on the ignition of a lean n-heptane/air m...
The ignition characteristics of lean primary reference fuel (PRF)/air/exhaust gas recirculation (EGR...
The effects of shear velocity on the ignition characteristics of a lean primary reference fuel (PRF)...
The effects of additive injection including CH2O and H2O2 on the ignition characteristics of a lean ...
Direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)/air mixtures un...
The effects of dual additives including formaldehyde (CH2O) and hydrogen peroxide (H2O2) on the igni...
Chemical aspects of the ignition of a primary reference fuel (PRF)/air mixture under reactivity cont...
Two-dimensional direct numerical simulation (2-D DNS) is used to investigate the effect of turbulenc...
Numerical simulations are performed to study the nature of auto-ignition and flame propagation in a ...
Two-dimensional direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)...
Direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)/air mixtures un...
The effect of thermal stratification, spark-ignition, and turbulence on the ignition of a lean homog...
The ignition characteristics of a lean primary reference fuel (PRF)/air mixture under reactivity con...
The effects of the stratifications of temperature, T, and equivalence ratio, ??{symbol}, on the igni...
The effect of thermal stratification on the ignition of a lean homogeneous n-heptane/air mixture at ...
The effects of temperature and composition stratifications on the ignition of a lean n-heptane/air m...
The ignition characteristics of lean primary reference fuel (PRF)/air/exhaust gas recirculation (EGR...
The effects of shear velocity on the ignition characteristics of a lean primary reference fuel (PRF)...
The effects of additive injection including CH2O and H2O2 on the ignition characteristics of a lean ...
Direct numerical simulations (DNSs) of ignition of lean primary reference fuel (PRF)/air mixtures un...
The effects of dual additives including formaldehyde (CH2O) and hydrogen peroxide (H2O2) on the igni...
Chemical aspects of the ignition of a primary reference fuel (PRF)/air mixture under reactivity cont...
Two-dimensional direct numerical simulation (2-D DNS) is used to investigate the effect of turbulenc...
Numerical simulations are performed to study the nature of auto-ignition and flame propagation in a ...