Soot concentrations are generally over predicted during the typical application of fire models. The addition of soot deposition and gravitational settling mechanisms to Fire Dynamics Simulator (FDS) results in improved predictions; however, those predictions are highly dependent upon assumptions of soot particle size. Large particle sizes appear to be needed to get FDS predictions on soot concentration to match measured data. Simple predictions of (and experimental data on) aerosol agglomeration show that compartment fires can result in significant amount of large particles sizes; however, the simple predictions do not fully account for the particle sizes needed to match the measured data. Recommendations on additional research and data col...
International audienceA numerical post-processing strategy to reconstruct the size of soot primary p...
We are interested in the simulation of wildland fires at the landscape level, including the formatio...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...
Soot released from fires not only causes danger to lives and property damage, but also effects fire ...
A soot transport model called Multi-Particle-Size model (MPS model) was developed to improve the pre...
Research efforts are focused on advancing soot modeling in laminar flames using a detailed sectional...
Soot particles formed in combustion processes are well-known for their negative effects, but their f...
Soot emissions from combustion devices are known to have harmful effects on the environment and huma...
Numerical simulation of soot formation in a laminar premixed burner-stabilized ethylene stagnation f...
<div><p>For decades, soot has been modeled as fractal-like aggregates of nearly equiaxed spherules. ...
<p>Two coalescence models based on different merging mechanisms are introduced. The effects of the s...
Deposition of soot generated from fires is important for tenability, smoke management, detector resp...
Soot particles have been identified as the second largest contributor to global warming (just after ...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
Aerosol dynamics plays an important role in the modelling of soot formation in combustion processes,...
International audienceA numerical post-processing strategy to reconstruct the size of soot primary p...
We are interested in the simulation of wildland fires at the landscape level, including the formatio...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...
Soot released from fires not only causes danger to lives and property damage, but also effects fire ...
A soot transport model called Multi-Particle-Size model (MPS model) was developed to improve the pre...
Research efforts are focused on advancing soot modeling in laminar flames using a detailed sectional...
Soot particles formed in combustion processes are well-known for their negative effects, but their f...
Soot emissions from combustion devices are known to have harmful effects on the environment and huma...
Numerical simulation of soot formation in a laminar premixed burner-stabilized ethylene stagnation f...
<div><p>For decades, soot has been modeled as fractal-like aggregates of nearly equiaxed spherules. ...
<p>Two coalescence models based on different merging mechanisms are introduced. The effects of the s...
Deposition of soot generated from fires is important for tenability, smoke management, detector resp...
Soot particles have been identified as the second largest contributor to global warming (just after ...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
Aerosol dynamics plays an important role in the modelling of soot formation in combustion processes,...
International audienceA numerical post-processing strategy to reconstruct the size of soot primary p...
We are interested in the simulation of wildland fires at the landscape level, including the formatio...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...