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A Comparison of Flame Spread Characteristics over Solids in Concurrent Flow Using Two Different Pyrolysis Models

机译:两种不同热解模型对并流火焰在固体中扩散特性的比较

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Two solid pyrolysis models are employed in a concurrent-flow flame spread model to compare the flame structure and spreading characteristics. The first is a zeroth-order surface pyrolysis, and the second is a first-order in-depth pyrolysis. Comparisons are made for samples when the spread rate reaches a steady value and the flame reaches a constant length. The computed results show (1) the mass burning rate distributions at the solid surface are qualitatively different near the flame (pyrolysis base region), (2) the first-order pyrolysis model shows that the propagating flame leaves unburnt solid fuel, and (3) the flame length and spread rate dependence on sample thickness are different for the two cases.
机译:在并发流火焰扩散模型中采用了两种固体热解模型来比较火焰结构和扩散特性。第一个是零级表面热解,第二个是一级深度热解。当扩散率达到稳定值且火焰达到恒定长度时,对样品进行比较。计算结果表明:(1)火焰附近(热解基部区域)固体表面的质量燃烧速率分布有质的差异;(2)一阶热解模型显示正在传播的火焰留下未燃烧的固体燃料;(3) )两种情况下,火焰长度和扩散速率对样品厚度的依赖性不同。

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