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Experimental study and asymptotic analysis of horizontally forced forward smoldering combustion

机译:水平强制前向阴燃燃烧的实验研究和渐近分析

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An experimental study and asymptotic analysis were conducted to investigate smoldering propagation in a horizontally oriented layer of flexible polyurethane foam. Experiments were done in a small-scale wind tunnel, where the air current is flush with the upper surface of the foam layer. The activation energy asymptotic approach was applied to analyze smoldering propagation. The experimental results show that increasing the air flow over the foam's surface not only enhances the mass transfer of oxygen to the smoldering reaction zone, but also increases the heat loss to the surroundings. The maximum smoldering propagation rate was observed at medium flow rates of air. The variation of the steady smoldering temperature with the flow rate followed the same trend as that of the smoldering propagation rate. Both adiabatic and non-adiabatic conditions were considered in the asymptotic analysis. For the adiabatic case, it is shown that the smoldering propagation rate and the smoldering temperature both increase with the flow rate of air. Results from the adiabatic analysis show that an increase in the density of the porous material lowers the smoldering propagation rate. Increasing the concentration of ambient oxygen, the porosity of the porous material or the mass transfer coefficient of the air stream increases the smoldering propagation rate. Results from the nonadiabatic analysis show a similar trend. Consistency is observed between the analytical results and the experimental measurements.
机译:进行了实验研究和渐近分析,以研究在柔性聚氨酯泡沫的水平取向层中的阴燃扩散。实验是在小规模的风洞中进行的,其中的气流与泡沫层的上表面齐平。活化能渐近法被用于分析阴燃传播。实验结果表明,增加泡沫表面的空气流通量不仅会增强氧气向阴燃反应区的传质,而且还会增加向环境的热损失。在中等流量的空气中观察到最大的阴燃传播速率。稳定阴燃温度随流量的变化遵循与阴燃传播率相同的趋势。渐进分析同时考虑了绝热和非绝热条件。对于绝热情况,表明闷烧传播速率和闷烧温度均随着空气流量的增加而增加。绝热分析的结果表明,多孔材料密度的增加降低了阴燃传播速率。增加环境氧气的浓度,多孔材料的孔隙率或空气流的传质系数会提高阴燃传播速率。非绝热分析的结果显示出相似的趋势。在分析结果和实验测量之间观察到一致性。

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