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Shapes of Nonbuoyant Round Luminous Laminar-Jet Diffusion Flames in Coflowing Air

机译:气流中非浮力圆形发光层流-射流扩散火焰的形状

摘要

The shapes (luminous flame boundaries) of steady nonbuoyant round luminous hydrocarbon-fueled laminar-jet diffusion flames in coflowing air were studied both experimentally and theoretically. Flame shapes were measured from photographs of flames burning at low pressures in order to minimize the effects of buoyancy. Test conditions involved acetylene-, propylene. and 1,3-butadiene-fueled flames having initial reactant temperatures of 300 K, ambient pressures of 19-50 kPa, jet-exit Reynolds numbers of 18-121, and initial air/fuel velocity ratios of 0.22-32.45 to yield luminous flame lengths of 21-198 mm. The present flames were close to the laminar smoke point but were not soot emitting. Simple expressions to estimate the shapes of nonbuoyant laminar-jet diffusion flames in coflow were found by extending an earlier analysis of Mahalingam et al. These formulas provided a good correlation of present measurements except near the burner exit where self-similar approximations used in the simplified analysis are no longer appropriate.
机译:通过实验和理论研究了稳定的非浮力圆形发光烃燃料层流射流扩散火焰在流动空气中的形状(发光火焰边界)。从在低压下燃烧的火焰照片中测量火焰形状,以最小化浮力的影响。测试条件涉及乙炔,丙烯。和1,3-丁二烯为燃料的火焰,其初始反应物温度为300 K,环境压力为19-50 kPa,射流雷诺数为18-121,初始空燃比为0.22-32.45,以产生发光火焰长度为21-198毫米。目前的火焰接近层流烟点,但没有烟灰散发。通过扩展Mahalingam等人的早期分析,发现了简单的表达式来估算同流中非浮力层流的扩散火焰的形状。这些公式提供了当前测量值的良好相关性,只是在燃烧器出口附近,简化分析中使用的自相似近似不再适用。

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