首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >CORRESPONDENCE BETWEEN UNCOUPLED FLAME MACROSTRUCTURES AND THERMOACOUSTIC INSTABILITY IN PREMIXED SWIRL-STABILIZED COMBUSTION
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CORRESPONDENCE BETWEEN UNCOUPLED FLAME MACROSTRUCTURES AND THERMOACOUSTIC INSTABILITY IN PREMIXED SWIRL-STABILIZED COMBUSTION

机译:预混旋流稳定燃烧中未耦合的火焰宏结构与热声不稳定性之间的对应关系

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In this paper, we conduct an experimental investigation of a confined premixed swirl-stabilized dump combustor similar to those found in modern gas turbines. We operate the combustor with premixed methane-air in the lean range of equivalence ratio Φ ∈ [0.5 - 0.75]. First, we observe different dynamic modes in the lean operating range, as the equivalence ratio is raised, confirming observations made previously in a similar combustor geometry but with a different fuel. Next we examine the correspondence between dynamic mode transitions and changes in the mean flame configuration or macrostructure. We show that each dynamic mode is associated with a specific flame macrostructure. By modifying the combustor length without changing the underlying flow, the resonant frequencies of the geometry are altered allowing for decoupling the heat release fluctuations and the acoustic field, in a certain range of equivalence ratio. Mean flame configurations in the modified (short) combustor and for the same range of equivalence ratio are examined. It is found that not only the same sequence of flame configurations is observed in both combustors (long and short) but also that the set of equivalence ratio where transitions in the flame configuration occur is closely related to the onset of thermo-acoustic instabilities. For both combustor lengths, the flame structure changes at similar equivalence ratio whether thermo-acoustic coupling is allowed or not, suggesting that the flame configuration holds the key to understanding the onset of self-excited thermo-acoustic instability in this range. Finally, we focus on the flame configuration transition that was correlated with the onset of the first dynamically unstable mode Φ ∈ [0.61 -0.64]. Our analysis of this transition in the short, uncoupled combustor shows that it is associated with an intermittent appearance of a flame in the outer recirculation zone (ORZ). The spectral analysis of this "ORZ flame flickering" - based on flame chemiluminescence data - shows the presence of unsteady events occurring at two distinct frequency ranges. A broad band at low frequency in the range ~[1 Hz - 10 Hz] and a narrow band centered around 28 Hz.
机译:在本文中,我们对密闭式预混合旋流稳定转储燃烧室进行了实验研究,类似于现代燃气轮机中的燃烧室。我们在等当比Φ∈[0.5-0.75]的稀薄范围内,用预混合的甲烷-空气运行燃烧器。首先,随着当量比的提高,我们在稀薄运行范围内观察到不同的动态模式,从而证实了先前在类似燃烧室几何形状但使用不同燃料的情况下所进行的观察。接下来,我们检查动态模式转变与平均火焰构型或宏观结构变化之间的对应关系。我们表明,每个动态模式都与特定的火焰宏观结构相关联。通过在不改变基础流量的情况下修改燃烧器长度,可以改变几何形状的共振频率,从而在一定的当量比范围内将热量释放波动和声场解耦。检查了改进型(短)燃烧室中的平均火焰构型以及当量比的相同范围。发现不仅在两个燃烧器(长和短)中都观察到相同的火焰构型序列,而且在火焰构型中发生过渡的当量比组与热声不稳定性的发生密切相关。对于两种燃烧器长度,无论是否允许热声耦合,火焰结构都会以相似的当量比变化,这表明火焰构型是理解此范围内自激热声不稳定性发生的关键。最后,我们关注与第一动态不稳定模式Φ∈[0.61-0.64]的发生有关的火焰构型转变。我们对短而未耦合的燃烧器中这种过渡的分析表明,它与外部再循环区(ORZ)中间歇性出现的火焰有关。基于火焰化学发光数据的“ ORZ火焰闪烁”的频谱分析表明,存在着在两个不同的频率范围内发生的不稳定事件。低频范围在〜[1 Hz-10 Hz]范围内的宽带,而窄带以28 Hz为中心。

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