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Propagation speed of wrinkled premixed flames within stoichiometric hydrogen-air mixtures under standard temperature and pressure

机译:在标准温度和压力下,化学计量氢-空气混合物中起皱的预混火焰在火焰中的传播速度

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摘要

To explore the influence mechanism of initial turbulence on propagation speed of wrinkled flames, the turbulent combustion behavior of wrinkled stoichiometric hydrogen premixed flames was studied in a spherical fanstirred closed vessel under standard temperature and pressure. The variations on flame structure were first observed; turbulent flames first were distorted and then became cellular, and both first and second critical flame radii of cellularity declined with a increased rate as turbulent intensity rose. Then, the variations of stretch effects were compared to laminar flame; the global stretch rate on turbulent flame at a same flame size was raised while the enhancement extent was obviously enlarged with the increase of initial turbulent intensity and/or the growth of flame size. Finally, the variation regulations of propagation speed induced by varying turbulent intensity were analyzed; the nexus between propagation speed and initial turbulence was discussed with the considerations of cellularity phenomenon and stretch effects.
机译:为了探索初始湍流对皱纹火焰传播速度的影响机理,研究了在标准温度和压力下在球形扇形密闭容器中起皱的化学计量氢预混火焰的湍流燃烧行为。首先观察到火焰结构的变化。湍流火焰首先变形,然后变为蜂窝状,随着湍流强度的增加,蜂窝状细胞的第一和第二临界火焰半径均以增加的速率下降。然后,将拉伸效果的变化与层流火焰进行了比较。随着初始湍流强度的增加和/或火焰尺寸的增加,在相同火焰尺寸下湍流火焰的整体拉伸速率增加,而增强程度明显增大。最后,分析了湍流强度变化引起的传播速度变化规律。考虑到细胞现象和拉伸效应,讨论了传播速度与初始湍流之间的联系。

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