首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Dynamics of a Transversely Excited Swirling, Lifted Flame: Flame Response Modeling and Comparison With Experiments
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Dynamics of a Transversely Excited Swirling, Lifted Flame: Flame Response Modeling and Comparison With Experiments

机译:横向激发涡旋,抬升火焰的动力学:火焰响应建模及与实验的比较

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摘要

This paper describes measurements and modeling of the response of a swirling, lifted flame to transverse flow excitation. The problem is motivated by combustion instabilities associated with transverse acoustic modes of combustors. The developed formulation relates the unsteady flame response characteristics to both the spatially filtered disturbance field and mean flow field characteristics. Measured flow and flame features are used as model inputs in order to compare the global heat release fluctuations with those measured from the experiment, showing quite good agreement. As such, this paper shows that, given sufficient flow field information, the dynamic flame response can be reasonably predicted from first-principles calculations with no empiricism. We also show that the strongly helical disturbances present in the flow have minimal impact on the global response of axisymmetric flames, as the local heat release fluctuations that they induce cancel each other azimuthally.
机译:本文描述了涡旋上升的火焰对横流激励的响应的测量和建模。该问题是由与燃烧器的横向声学模式有关的燃烧不稳定性引起的。所开发的公式将不稳定的火焰响应特性与空间滤波干扰场和平均流场特性都相关。测得的流量和火焰特征用作模型输入,以便将整体放热波动与实验测得的波动进行比较,显示出很好的一致性。因此,本文表明,在有足够的流场信息的情况下,可以从第一性原理计算中合理地预测动态火焰响应,而无需经验。我们还表明,存在于流中的强螺旋扰动对轴对称火焰的整体响应影响最小,因为它们引起的局部放热波动彼此相互抵消。

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