A practical CFD method is presented in this study to predict the generation of toxic gases in enclosure fires. The model makes use of local combustion conditions to determine the yield of carbon monoxide, carbon dioxide, hydrocarbon, soot and oxygen. The local conditions used in the determination of these species are the local equivalence ratio (LER) and the local temperature. The heat released from combustion is calculated using the volumetric heat source model or the eddy dissipation model (EDM). The model is then used to simulate a range of reduced-scale and full-scale fire experiments. The model predictions for most of the predicted species are then shown to be in good agreement with the test result
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
The evolution of toxic gases in the hot layer of an enclosure fire is simulated by a batch perfectly...
The central idea behind the newly developed toxicity model is the use of the Local Equivalence Ratio...
A toxicity model capable of predicting toxic gas concentrations within fire enclosures utilizing the...
A toxicity model on dividing the computational domain into two parts, a control region (CR) and a tr...
In this paper, a local equivalence ratio based toxicity model has been extended to include the calcu...
In this paper, a local equivalence ratio based toxicity model has been extended to include the calcu...
The enormous complexity of the coupled phenomena of fire growth and toxic gas generation presents a ...
The field modelling of compartment fires incorporates increasingly complex representations of the ph...
The amount of atmospheric hydrogen chloride (HCl) within fire enclosures produced from the combustio...
In this research, a systematic set of numerical simulations is conducted to investigate the accuracy...
Fire is defined as an extremely hazardous event, causing a threat to life and health of persons, but...
International audiencePredictive simulations of liquid pool fires are based on the previous experime...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
The evolution of toxic gases in the hot layer of an enclosure fire is simulated by a batch perfectly...
The central idea behind the newly developed toxicity model is the use of the Local Equivalence Ratio...
A toxicity model capable of predicting toxic gas concentrations within fire enclosures utilizing the...
A toxicity model on dividing the computational domain into two parts, a control region (CR) and a tr...
In this paper, a local equivalence ratio based toxicity model has been extended to include the calcu...
In this paper, a local equivalence ratio based toxicity model has been extended to include the calcu...
The enormous complexity of the coupled phenomena of fire growth and toxic gas generation presents a ...
The field modelling of compartment fires incorporates increasingly complex representations of the ph...
The amount of atmospheric hydrogen chloride (HCl) within fire enclosures produced from the combustio...
In this research, a systematic set of numerical simulations is conducted to investigate the accuracy...
Fire is defined as an extremely hazardous event, causing a threat to life and health of persons, but...
International audiencePredictive simulations of liquid pool fires are based on the previous experime...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
Heat radiation, combustion products, and flame engulfment are the main hazards from a fire event. Se...
The evolution of toxic gases in the hot layer of an enclosure fire is simulated by a batch perfectly...