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A MODEL FOR THE THERMOACOUSTIC RESPONSE OF A PREMIXED SWIRL BURNER, PART Ⅱ: THE FLAME RESPONSE

机译:预混旋流燃烧器的热声响应模型,第二部分:火焰响应

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摘要

A comprehensive model for the response of a premixed flame to acoustic velocity fluctuations is developed and applied to the same small laboratory swirl burner as was treated in Part Ⅰ, using the validated model for the acoustics of the system. A number of possible mechanisms of acoustic interactions with the flame are reviewed, and the three judged to be the most important for this application are quantified on a consistent basis. The three mechanisms are those due to the direct influence of the velocity and turbulence, to coherent vortices shed from the burner exit, and to equivalence ratio fluctuations. The time-averaged position of the flame front at which most of the excitation takes place is identified from the observations, and the direction of the incident flow is deduced. The overall response to planar acoustic waves through the burner is then worked out. Comparison with experimental data for a wide range of conditions shows that the major trends in frequency of self-excitation are correctly predicted.
机译:建立了一个预混火焰对声速波动响应的综合模型,并将其应用到与第一部分相同的小型实验室旋流燃烧器中,并使用了经过验证的系统声学模型。审查了与火焰的声学相互作用的许多可能的机制,并在一致的基础上对被认为对本应用最重要的三种机制进行了量化。这三种机理是由于速度和湍流的直接影响,从燃烧器出口散发出的连贯涡流以及当量比波动引起的。从观察中确定发生大部分激发的火焰前沿的时间平均位置,并推导入射流的方向。然后计算出对通过燃烧器的平面声波的总体响应。与各种条件下的实验数据进行比较表明,正确预测了自激频率的主要趋势。

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