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Experimental study of the effects of flameholder geometry on emissions and performance of lean premixed combustors

机译:火焰架几何形状对稀薄预混燃烧器排放和性能影响的实验研究

摘要

Emissions of NOx, CO, and unburned hydrocarbons (UHC) are reported for a lean premixed propane-air system at inlet conditions of 800K and 1MPa using twelve flameholder designs. The flameholders tested represent six design concepts with two values of blockage for each concept. Data were obtained at reference velocities of 35 m/s, 25 m/s and 20 m/s at combustor stations 10 cm and 30 cm downstream of the flameholders. Flameholder pressure drop was found to be a principal determinant of emissions performance. Designs producing larger pressure drops also produced less NOx, CO, and UHC emissions. The lean stability limit equivalence ratio was found to be approximately 0.35 for all designs. Flashback velocities (axial components in the flameholder passages) varied between 30 m/s and 40 m/s. A perforated plate flameholder was operated with a velocity as low as 23 m/s through the perforations at equivalence ratio 0.7 without producing flashback.
机译:据报道,采用十二种火焰保持器设计,在入口条件为800K和1MPa的稀薄预混合丙烷-空气系统中,NOx,CO和未燃烧的碳氢化合物(UHC)的排放。测试的火焰保持器代表六个设计概念,每个概念有两个阻隔值。在火焰保持器下游10 cm和30 cm的燃烧室以35 m / s,25 m / s和20 m / s的参考速度获得数据。发现火焰保持器的压降是排放性能的主要决定因素。产生较大压降的设计还减少了NOx,CO和UHC的排放。发现所有设计的稀薄稳定性极限当量比约为0.35。闪回速度(火焰保持器通道中的轴向分量)在30 m / s和40 m / s之间变化。穿孔板火焰保持器以低至23 m / s的速度通过穿孔,当量比为0.7时不会产生回火。

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