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FLAMELET MOTION IN PREMIXED TURBULENT AXISYMMETRIC ROD-STABILIZED AND BUNSEN FLAMES

机译:预混合湍流轴对称和本森火焰的小火焰运动

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A four-element electrostatic probe was employed to examine flamelet motion in axisymmetric propane-air flames at normal atmospheric pressure and temperature. Besides a number of turbulent (rim-stabilized) Bunsen flames, a turbulent V-shaped flame, stabilized by a vertical rod placed along the axis of the Bunsen-type burner, was investigated. Measurements were conducted at three different positions in the Bunsen flames (i.e., one on the centerline and two off axis, the lowest being at half the height of the centerline position) and at two positions in the V flame (roughly corresponding to the off-axis positions of the Bunsen flames). For the Bunsen flames, measurements were made at three different propane-air equivalence ratios, two of them (one lean and the other rich) having the same laminar burning velocity. To aid in interpretation of the propane-air results for these last two measurements, Bunsen-flame measurements also were made for two (lean and rich) pairs of methane-air flames having the same laminar burning velocities. Fuel flow rates and turbulence intensities and scales were essentially the same in all experiments (fully developed turbulent pipe flow at a Reynolds number of 7000, with a ratio of mean velocity to laminar burning velocity on the order of ten). In all cases, scatterplots for flamelet velocity vectors were obtained when flamelets passed the probe in the direction of fresh-to-burnt mixtures and, separately, of burnt-to-fresh mixtures. Correlations between magnitudes and directions of flamelet velocities were measured, and probability distributions were generated for magnitudes and for directions of flamelet velocities. The results showed significant differences in distributions of magnitudes and of directions for fresh-to-burnt and for burnt-to-fresh passage. They also showed differences between the lean and rich propane flames but not between the lean and rich methane-flame pairs, the characteristics of which tended to resemble those of the lean propane flames. Finally, flamelet motions for the V flame were noticeably different in many respects from those for the Bunsen flames, as explained by the different effects of thermal expansion on the mean flow in the two configurations, the fresh mixture being radially on the inner side of the Bunsen flames and on the outer side of the V flame. The exceptional characteristics of rich propane were explained by nonlinear enhancement of the average flamelet burning velocity through preferential oxygen diffusion to turbulence-induced flamelet bulges convex toward the fresh mixture. The differences in the probability distributions for the two passage directions were thought to arise from the laminar burning velocity measured in the burnt gas being not negligible in comparison with average flamelet velocities, thereby influencing distribution shapes for burnt-to-fresh passage.
机译:使用四元素静电探针在正常大气压和温度下检查轴对称丙烷-空气火焰中的小火焰运动。除了许多湍流(边缘稳定的)本生火焰外,还研究了一种湍流V型火焰,该火焰由沿本生型燃烧器的轴线放置的垂直杆稳定。测量是在本生火焰中的三个不同位置进行的(即,一个在中心线上,两个在偏离轴线的位置,最低的是在中心线位置的高度的一半),在V火焰中的两个位置(大致对应于偏离本生火焰的轴向位置)。对于本生火焰,在三种不同的丙烷-空气当量比下进行测量,其中两种(一个贫油,另一个富油)具有相同的层流燃烧速度。为了帮助解释这最后两次测量的丙烷空气结果,还对具有相同层流燃烧速度的两对(稀薄和浓)甲烷-空气火焰进行了本生火焰测量。在所有实验中,燃料流率,湍流强度和比例基本相同(雷诺数为7000时充分发展的湍流管流,平均速度与层流燃烧速度之比约为10)。在所有情况下,当小火焰沿着新鲜燃烧的混合物以及分别从燃烧到新鲜的混合物的方向通过探头时,就获得了火焰速度矢量的散点图。测量了小火焰速度的大小和方向之间的相关性,并生成了小火焰速度的大小和方向的概率分布。结果表明,新鲜燃烧和新鲜燃烧通过的幅度和方向分布存在显着差异。他们还显示了贫燃丙烷气和富燃丙烷气之间的差异,而贫燃甲烷气和富燃甲烷气对之间没有差异,它们的特性往往类似于贫燃丙烷气。最后,V型火焰的小火焰运动与本生火焰的小火焰运动在许多方面都有明显的不同,这可以通过两种配置中热膨胀对平均流量的不同影响来解释,新鲜混合物径向地位于火焰的内侧。本生火焰和V火焰的外侧。富丙烷的特殊特性是通过优先氧扩散到湍流引起的朝向新鲜混合物凸出的小火焰凸起的非线性增强平均小火焰燃烧速度而得到解释的。认为两个通过方向的概率分布的差异是由于在燃烧气体中测得的层流燃烧速度与平均小火焰速度相比不可忽略,从而影响了从新到旧通过的分布形状。

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