In this study, three different oxidation-driven soot aggregate fragmentation models with 1:1, 2:1, and 10:1 fragmentation patterns are developed and implemented into a laminar coflow ethylene/air diffusion flame, together with a pyrene-based soot model and a sectional aerosol dynamics model. It is found that the average degree of particle aggregation (np) in the soot oxidation region is not correctly predicted if oxidation-driven aggregate fragmentation is neglected; whereas the incorporation of aggregate fragmentation significantly improves the np prediction in the soot oxidation region. Similar results are obtained using the 1:1 and 2:1 fragmentation patterns. However, as the pattern ratio increases to 10:1, appreciable difference in the ...
International audienceMature soot aggregates exhibit a morphology which is currently mimicked by dif...
International audienceSoot particle surface growth may have a significant impact on aggregation kine...
A detailed kinetic mechanism of aromatic growth, particulate formation, and oxidation is presented a...
The first goal of this thesis is to develop and validate a modeling tool into which fundamental comb...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
While the formation and growth of soot particles has received much attention, the subsequent destruc...
The macroscopic simulation of soot production in flames by CFD approaches often assumes of spherical...
International audienceExperimental studies have suggested that soot particles formed along different...
Numerical simulation of soot formation in a laminar premixed burner-stabilised benchmark ethylene st...
<p>Two coalescence models based on different merging mechanisms are introduced. The effects of the s...
In this work soot oxidation induced-fragmentation is modeled by using a Multi-Sectional approach. Th...
Soot formation is investigated experimentally and numerically in a counterflow diffusion flame which...
A numerical study is carried out to, first of all, investigate the capability of a Polycyclic Aromat...
Numerical simulation of soot formation in a laminar premixed burner-stabilized ethylene stagnation f...
Research efforts are focused on advancing soot modeling in laminar flames using a detailed sectional...
International audienceMature soot aggregates exhibit a morphology which is currently mimicked by dif...
International audienceSoot particle surface growth may have a significant impact on aggregation kine...
A detailed kinetic mechanism of aromatic growth, particulate formation, and oxidation is presented a...
The first goal of this thesis is to develop and validate a modeling tool into which fundamental comb...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
While the formation and growth of soot particles has received much attention, the subsequent destruc...
The macroscopic simulation of soot production in flames by CFD approaches often assumes of spherical...
International audienceExperimental studies have suggested that soot particles formed along different...
Numerical simulation of soot formation in a laminar premixed burner-stabilised benchmark ethylene st...
<p>Two coalescence models based on different merging mechanisms are introduced. The effects of the s...
In this work soot oxidation induced-fragmentation is modeled by using a Multi-Sectional approach. Th...
Soot formation is investigated experimentally and numerically in a counterflow diffusion flame which...
A numerical study is carried out to, first of all, investigate the capability of a Polycyclic Aromat...
Numerical simulation of soot formation in a laminar premixed burner-stabilized ethylene stagnation f...
Research efforts are focused on advancing soot modeling in laminar flames using a detailed sectional...
International audienceMature soot aggregates exhibit a morphology which is currently mimicked by dif...
International audienceSoot particle surface growth may have a significant impact on aggregation kine...
A detailed kinetic mechanism of aromatic growth, particulate formation, and oxidation is presented a...