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Penetration behavior of opposed rows of staggered secondary air jets depending on jet penetration coefficient and momentum flux ratio

机译:交错的二次空气射流相对排的穿透行为取决于射流穿透系数和动量通量比

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A secondary air jet at an industrial combustor, such as an incinerator, has a strong effect on the gas-phase combustion and on the emission control of flue gases, such as CO and NOx, at the secondary combustion chamber. The secondary air's mixing performance is influenced by the jet configuration, including the orifice shape, size, and interval. In this study, we carried out a visualization experiment to analyze the penetration behavior of a secondary air jet system as a function of the jet penetration coefficient (C) and momentum flux ratio (J), based on previous research studies. We used a laser sheet beam and a fog generator to observe the penetration of the secondary air jet. The mass ratio of the secondary to the primary air was 0.24, and all experiments were carried out in atmospheric conditions. According to our experimental results, the penetration depth appeared shorter compared with the results of previously published research studies, which indicated that the optimum jet configuration with proper penetration of staggered jets occurs when C was equal to five. Results showed that the jets could not generate proper intersecting flow but collided at the center plane, indicating that the penetration depth was not enough for optimum mixing. The main differences in experimental conditions compared with the previously conducted research studies relate to the use of J values that are one order higher. The choice of J values induced high turbulence, and resulted in a high total viscosity, thereby obstructing the intersection of staggered jets. It also led to a smaller orifice size comparing to the duct depth. Therefore, a higher C value should be assigned to a higher J value of staggered jet configuration.
机译:工业燃烧器(如焚化炉)处的二次空气射流对气相燃烧和二次燃烧室中烟道气(如CO和NOx)的排放控制产生强烈影响。二次空气的混合性能受射流配置的影响,包括孔口的形状,大小和间隔。在这项研究中,我们基于先前的研究,进行了可视化实验,以分析二次空气射流系统的穿透行为,该行为是射流穿透系数(C)和动量通量比(J)的函数。我们使用激光薄片光束和雾发生器观察二次空气射流的穿透。二次空气与一次空气的质量比为0.24,所有实验均在大气条件下进行。根据我们的实验结果,与以前发表的研究结果相比,穿透深度显得更短,这表明当C等于5时,具有交错射流正确穿透的最佳射流配置。结果表明,射流无法产生适当的相交流,但在中心平面发生碰撞,这表明穿透深度不足以实现最佳混合。与先前进行的研究相比,实验条件的主要区别在于使用J值高一个数量级。 J值的选择引起高湍流,并导致高的总粘度,从而阻碍了交错射流的相交。与导管深度相比,这也导致孔口尺寸更小。因此,应将较高的C值分配给交错射流配置的较高J值。

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