首页> 外文会议>2002 Engineering Technology Conference on Energy, Feb 4-5, 2002, Houston, Texas >ASPECT RATIO EFFECTS OF ELLIPTIC CO-FLOW ON TURBULENT JET FLAME STRUCTURES
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ASPECT RATIO EFFECTS OF ELLIPTIC CO-FLOW ON TURBULENT JET FLAME STRUCTURES

机译:椭圆共流对湍流射流火焰结构的长宽比影响

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The aspect ratio effects of elliptic co-flow on the structure of a turbulent propane diffusion flame from a circular tube have been presented. Pollutant emission, flame radiation, flame structure, and soot concentration have been measured. The fuel jet exit Reynolds number is 2700, and the exit Reynolds number for the co-flow is 4010 and 8025 based on the minor and major axis respectively. The results are compared with the measurements from the experiments in a circular co-flow, which is the baseline condition for the present study. The pollution characteristics and the structure of the flame in the elliptic co-flow are significantly different from those in the circular co-flow. The NO emission is higher and the CO emission is lower in the elliptic co-flow. Elliptic co-flow flame produces less soot than circular co-flow flame. The study shows that the elliptic co-flow aspect ratio has a controlling influence on various combustion characteristics. In general, it is seen that as the aspect ratio of the elliptic co-flow is increased from 2:1 to 4:1, the entrainment of air increases and thus the combustion characteristics are enhanced. Compared to 2:1 AR co-flow flames, the flames with 4:1 AR co-flow are more stable, have a lower flame height, produce more NO and less CO, the flame peak temperature is higher, are less sooty, and radiate less. Flame spectral measurements show that the 4:1 aspect ratio flames produce more OH, CH, C_2 and H_2O radicals in the near-burner region than the 2:1 co-flow flames as a result of higher fuel oxidation.
机译:提出了椭圆共流对圆管湍流丙烷扩散火焰结构的长宽比影响。已测量了污染物排放,火焰辐射,火焰结构和烟尘浓度。基于短轴和长轴,燃油射流的出口雷诺数为2700,并流的出口雷诺数分别为4010和8025。将结果与循环同流实验的测量结果进行比较,这是本研究的基线条件。椭圆形同流中的污染特征和火焰结构与圆形同流中的污染特征和结构显着不同。在椭圆形共流中,NO排放较高,而CO排放较低。椭圆同流火焰产生的烟尘少于圆形同流火焰。研究表明,椭圆同流长宽比对各种燃烧特性具有控制作用。通常,可以看出,随着椭圆同流的纵横比从2:1增加到4:1,空气的夹带增加,因此燃烧特性得到增强。与2:1 AR并流火焰相比,具有4:1 AR并流的火焰更稳定,火焰高度更低,产生更多的NO和更少的CO,火焰峰值温度更高,烟气更小,辐射少。火焰光谱测量结果表明,由于燃料氧化程度更高,4:1长径比火焰在近燃烧器区域比2:1并流火焰产生更多的OH,CH,C_2和H_2O自由基。

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