This contribution reports an approximate analytical model to predict transient mass flux and ignition time of translucent fuel, black poly(methyl methacrylate) (PMMA), subjected to a time-dependent incident heat flux, atb, where t is time and a and b are constants. The model can be easily extended to other non-charring translucent solids. The model takes into account in-depth absorption of thermal radiation in the condensed phase, which is typically ignored in the analytical formulations. Both critical temperature and critical mass flux were employed as the ignition criteria to examine their effects on the predictions. The model was validated using exact numerical solutions and experimental data, and compared with earlier analytical models ...
AbstractRadiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorpt...
6th European Thermal Sciences Conference (Eurotherm), Poitiers, FRANCE, SEP 04-07, 2012International...
Radiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorption is e...
An analytical model was developed in this study to predict the heat transfer and ignition time of so...
A one‐dimensional numerical model and theoretical analysis involving both surface and in‐depth radia...
A one‐dimensional numerical model and theoretical analysis involving both surface and in‐depth radia...
Funding Information: The authors greatly acknowledge the support of the Academy of Finland under gra...
In a previous recent paper (Vermesi et al., Comb. Flame, 2016), we investigated the pyrolysis of a p...
An approximate closed form solution is developed for the mass loss rate of a semi-infinite solid irr...
Pyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key mechani...
The majority of material flammability studies in fire science literature consider a constant externa...
AbstractPyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key...
Although well studied, there are still interesting features about the ignition and steady burning ra...
International audienceThermal degradation of solid fuels is an issue of major importance in the pred...
Funding Information: The authors greatly acknowledge the support of the Academy of Finland under gra...
AbstractRadiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorpt...
6th European Thermal Sciences Conference (Eurotherm), Poitiers, FRANCE, SEP 04-07, 2012International...
Radiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorption is e...
An analytical model was developed in this study to predict the heat transfer and ignition time of so...
A one‐dimensional numerical model and theoretical analysis involving both surface and in‐depth radia...
A one‐dimensional numerical model and theoretical analysis involving both surface and in‐depth radia...
Funding Information: The authors greatly acknowledge the support of the Academy of Finland under gra...
In a previous recent paper (Vermesi et al., Comb. Flame, 2016), we investigated the pyrolysis of a p...
An approximate closed form solution is developed for the mass loss rate of a semi-infinite solid irr...
Pyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key mechani...
The majority of material flammability studies in fire science literature consider a constant externa...
AbstractPyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key...
Although well studied, there are still interesting features about the ignition and steady burning ra...
International audienceThermal degradation of solid fuels is an issue of major importance in the pred...
Funding Information: The authors greatly acknowledge the support of the Academy of Finland under gra...
AbstractRadiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorpt...
6th European Thermal Sciences Conference (Eurotherm), Poitiers, FRANCE, SEP 04-07, 2012International...
Radiative heat transfer to a solid is a key mechanism in fire dynamics, and in-depth absorption is e...