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Modeling the Pyrolysis and Combustion Behaviors of Non-Charring and Intumescent-Protected Polymers Using “FiresCone”

机译:使用“FiresCone”模拟非炭化和膨胀型保护聚合物的热解和燃烧行为

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摘要

A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion processes of different types of combustible materials, which also took into account both gas and solid phases. In the present study, some non-charring and intumescent-protected polymer samples were investigated regarding their combustion behaviors in response to pre-determined external heat fluxes. The modeling results were validated against the experimental outcomes obtained from a cone calorimeter. The predicted mass loss rates of the samples were found to fit reasonably well with the experimental data collected under various levels of external irradiation. Both the experimental and modeling results showed that the peak mass loss rate of the non-charring polymer material occurred near the end of burning, whereas for the intumescent-protected polymer it happed shortly after the start of the experiment. “FiresCone” is expected to act as a practical tool for the investigation of fire behavior of combustible materials. It is also expected to model fire scenarios under complicated conditions.
机译:开发了一个名为FiresCone的数学模型,以模拟不同类型的可燃材料的热解和燃烧过程,其中还考虑了气相和固相。在本研究中,研究了一些非炭化和膨胀保护的聚合物样品的燃烧行为,以响应预定的外部热通量。相对于从锥形量热仪获得的实验结果验证了建模结果。发现样品的预计质量损失率与在各种外部辐射水平下收集的实验数据相当吻合。实验和模型结果均表明,非炭化聚合物材料的峰值质量损失率出现在燃烧即将结束时,而对于膨胀保护型聚合物,它在实验开始后不久就发生了峰化。预期“ FiresCone”将用作研究可燃材料着火行为的实用工具。还可以对复杂条件下的火灾场景进行建模。

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