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首页> 外文期刊>International Journal of Automotive Technology >OH-RADICAL BEHAVIOR OF UNSTEADY LIFTED FLAME BASED ON INSTANTANEOUS CHANGE OF THE EQUIVALENCE RATIO
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OH-RADICAL BEHAVIOR OF UNSTEADY LIFTED FLAME BASED ON INSTANTANEOUS CHANGE OF THE EQUIVALENCE RATIO

机译:基于当量比瞬时变化的非稳态举升火焰的OH自由基行为

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In an earlier study, the current authors showed that an unsteady-state lifted flame generated by an equivalence ratio conversion system for a given fuel, was similar to a steady-state lifted flame in terms of the change characteristics from a premixed flame to a critical flame and then to a triple flame with a diffusion flame positioned in the middle according to the concentration difference. Therefore, this study used an OH-PLIF method to investigate the characteristics of a steady-state lifted flame and an unsteady-state lifted flame created under conditions identical to the flames in the preceding study. PLIF (Planar laser induced fluorescence) is practically effective for visualizing the concentration fields within a flame. The resulting OH-radical measurements showed that an unsteady-state lifted flame created under the specific conditions used in this study showed similar tendencies in terms of OH-radical distribution, fluorescence intensity, and liftoff height, to a steady-state lifted flame, thereby confirming that the behavior of an unsteady-state lifted flame can be effectively predicted based on the behavior of a steady-state lifted flame.
机译:在较早的研究中,当前作者表明,对于给定的燃料,当量比转换系统产生的非稳态提升火焰在从预混火焰到临界火焰的变化特性方面类似于稳态提升火焰。火焰,然后是三重火焰,扩散火焰根据浓度差位于中间。因此,本研究使用OH-PLIF方法来研究在与前述研究相同的条件下产生的稳态提升火焰和非稳态提升火焰的特性。 PLIF(平面激光诱导的荧光)对于可视化火焰中的浓度场实际上是有效的。所得的OH自由基测量结果表明,在本研究中使用的特定条件下产生的非稳态燃烧火焰显示出与稳态燃烧火焰相似的OH自由基分布,荧光强度和分离高度的趋势,从而证实可以基于稳态提升火焰的行为有效地预测非稳态提升火焰的行为。

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