首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >COMBUSTION INSTABILITIES OF SEPARATED STRATIFIED SWIRLING FLAMES WITH DIFFERENT DEGREES OF PREMIXEDNESS
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COMBUSTION INSTABILITIES OF SEPARATED STRATIFIED SWIRLING FLAMES WITH DIFFERENT DEGREES OF PREMIXEDNESS

机译:具有不同预混度的分层分层旋转火焰的燃烧不稳定性

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The effects of premixedness degrees on combustion instabilities of separated stratified swirling flames have been investigated experimentally in the Beihang Axial Swirler Independently-Stratified (BASIS) burner. The degree of premixedness is modulated by the fuel split between two injection positions in the outer stream. In the spectra of pressure oscillations, both the dominant frequency and amplitude of partially premixed flames are positively correlated with fuel split ratios. The partially premixed flame is found to feature a large-scale periodic convective motion based on CH* chemiluminescence images, which have been analyzed under different fuel split ratios by a point-to-point Fast Fourier Transform (FFT) method. The development of above convective motion is explained by combining the variation of pressure and heat release in the oscillation period. Local Rayleigh index maps show that the driving factor of combustion instability for the partially premixed flame mainly comes from the upstream of the combustor. Finally, thermoacoustic network analysis is applied to predict observed frequencies under both perfectly and partially premixed conditions. The supposed additional convective time due to equivalence ratio fluctuations and the elongated flame region for the partially premixed flame is validated by its longer time delay in the sensitivity analysis of the n-τ flame model.
机译:在北航轴向旋流器独立分层燃烧器中,通过实验研究了预混合度对分离的分层旋流火焰燃烧不稳定性的影响。预混合度由外部流中两个喷射位置之间的燃料分配来调节。在压力振荡谱中,部分预混火焰的主导频率和振幅都与燃料分配比成正相关。已发现部分预混火焰具有基于CH *化学发光图像的大规模周期性对流运动,已通过点对点快速傅立叶变换(FFT)方法在不同的燃料分配比下进行了分析。上述对流运动的发展是通过结合振荡周期内压力和热量释放的变化来解释的。局部瑞利指数图表明,部分预混火焰的燃烧不稳定性驱动因素主要来自燃烧室的上游。最后,应用热声网络分析来预测在完全和部分预混条件下的观测频率。在n-τ火焰模型的灵敏度分析中,由于等价比波动和部分预混火焰的拉长火焰区域而导致的假定的额外对流时间得到了验证。

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