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CHARACTERISTICS OF PARTIALLY PREMIXED ELLIPTIC BURNER FLAMES IN COFLOW- VELOCITY AIR STREAMS

机译:流速空气流中部分混合的椭圆形燃烧器火焰的特征

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This paper presents the results of an extension of the previous study where the effects of jet equivalence ratio and burner geometry on the characteristics of partially premixed propane/hydrogen/air flames at a coflow air velocity of 3 m/s were presented. The results here pertain to the experiments where the coflow velocity was doubled to understand the effects of coflow. Two different burner geometries (Circular, and 3:1 aspect ratio-AR elliptical burners) were used in the experiments with circular burner flames as baseline condition. During the study, the exit velocity was held constant at 20 m/s for all conditions. Stability tests indicated that circular burner flames were more stable than the 3:1AR elliptical burner flames at quiescent conditions. At 6 m/s coflow air velocity, stability of both the circular and the 3:1AR elliptic flames was enhanced. Circular burner flames were longer than 3:1AR elliptical burner flames. Introduction of 6 m/s coflow air velocity reduced the flame height. Global NO and CO emission indices decreased considerably after the introduction of coflow air in both burners. Peak temperature of circular burner flames was higher than that of 3:1AR elliptic burner at all conditions. Inflame concentration measurements were also taken in near-burner (25% flame height), midflame (50% flame height) and far-burner (75% flame height) regions.
机译:本文介绍了先前研究的扩展结果,该研究提出了当量气流速度为3 m / s时,射流当量比和燃烧器几何形状对部分预混丙烷/氢气/空气火焰特性的影响。这里的结果与实验相同,其中同流速度加倍以了解同流的影响。在实验中使用了两种不同的燃烧器几何形状(圆形和长宽比为3:1的AR椭圆形燃烧器),以圆形燃烧器火焰为基准条件。在研究过程中,所有条件下的出口速度均保持恒定在20 m / s。稳定性测试表明,在静态条件下,圆形燃烧器火焰比3:1AR椭圆形燃烧器火焰更稳定。在6 m / s的同流风速下,圆形和3:1AR椭圆形火焰的稳定性都得到增强。圆形燃烧器火焰比3:1AR椭圆形燃烧器火焰更长。引入6 m / s的同流空气速度降低了火焰高度。在两个燃烧器中引入同流空气后,全球NO和CO排放指数大大降低。在所有条件下,圆形燃烧器火焰的峰值温度均高于3:1AR椭圆形燃烧器的峰值温度。还对近燃烧器(火焰高度为25%),中燃烧器(火焰高度为50%)和远燃烧器(火焰高度为75%)进行了火焰浓度测量。

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