Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to the oxidizer on soot formation in laminar, counterflow ethylene diffusion flames at atmospheric pressure were studied numerically. A polycyclic aromatic hydrocarbon (PAH)-based sectional soot model coupled with detailed gas-phase chemistry, was used to investigate the underlying chemical pathways of soot formation. In agreement to available studies, the results showed that, in addition to the dilution effects, the fuel-side enrichment of hydrogen and/or oxidizer side dilution of water vapour suppress the soot formation through chemical effects. The reduction in soot formation through chemical effects of H2 and H2O addition is mainly attribut...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
Blending of hydrocarbon fuels with hydrogen is a practically feasible way to rapidly integrate a car...
A numerical study of soot formation and NO x emission in axisymmetric coflow laminar methane/hydroge...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
The influence of hydrogen addition to the fuel on soot formation in an ethylene/oxygen/nitrogen diff...
oai:cisti-icist.nrc-cnrc.ca:cistinparc:11714421The influence of hydrogen addition to the fuel of an ...
A detailed numerical study was conducted to investigate the effects of hydrogen and helium addition ...
This article employs the CoFlame Code to investigate the effects of hydrogen addition to fuel on soo...
In this work the influence of hydrogen addition to fuel on soot formation in a laminar coflow methan...
International audienceThe effects of adding water vapor to the air stream on flame properties and so...
International audienceThe effects of adding water vapor to the air stream on flame properties and so...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
Blending of hydrocarbon fuels with hydrogen is a practically feasible way to rapidly integrate a car...
A numerical study of soot formation and NO x emission in axisymmetric coflow laminar methane/hydroge...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
Effects of simultaneous, together with separate addition of hydrogen to the fuel and water vapour to...
The influence of hydrogen addition to the fuel on soot formation in an ethylene/oxygen/nitrogen diff...
oai:cisti-icist.nrc-cnrc.ca:cistinparc:11714421The influence of hydrogen addition to the fuel of an ...
A detailed numerical study was conducted to investigate the effects of hydrogen and helium addition ...
This article employs the CoFlame Code to investigate the effects of hydrogen addition to fuel on soo...
In this work the influence of hydrogen addition to fuel on soot formation in a laminar coflow methan...
International audienceThe effects of adding water vapor to the air stream on flame properties and so...
International audienceThe effects of adding water vapor to the air stream on flame properties and so...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
The effects of adding hydrogen and nitrogen on soot concentration in atmospheric laminar ethylene je...
Blending of hydrocarbon fuels with hydrogen is a practically feasible way to rapidly integrate a car...
A numerical study of soot formation and NO x emission in axisymmetric coflow laminar methane/hydroge...