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Flame height measurement of laminar inverse diffusion flames

机译:层流逆扩散火焰的火焰高度测量

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Flame heights of co-flowing cylindrical ethylene-air and methane-air laminar inverse diffusion flames were measured. The luminous flame height was found to be greater than the height of the reaction zone determined by planar laser-induced fluorescence (PLIF) of hydroxyl radicals (OH) because of luminous soot above the reaction zone. However, the location of the peak luminous signals along the centerline agreed very well with the OH flame height. Flame height predictions using Roper's analysis for circular port burners agreed with measured reaction zone heights when using values for the characteristic diffusion coefficient and/or diffusion temperature somewhat different from those recommended by Roper. The fact that Roper's analysis applies to inverse diffusion flames is evidence that inverse diffusion flames are similar in structure to normal diffusion flames.
机译:测量了共流圆柱形乙烯-空气和甲烷-空气层流逆扩散火焰的火焰高度。发现发光火焰高度大于由反应区上方的发光烟by引起的由羟基自由基(OH)的平面激光诱导荧光(PLIF)确定的反应区高度。但是,沿中心线的峰值发光信号的位置与OH火焰高度非常吻合。当使用特征扩散系数和/或扩散温度的值与Roper建议的值有所不同时,使用Roper分析的圆孔燃烧器的火焰高度预测值与测得的反应区高度一致。 Roper的分析适用于逆扩散火焰这一事实证明了逆扩散火焰在结构上与普通扩散火焰相似。

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