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Thermoacoustically driven flame motion and heat release variation in a swirl-stabilized gas turbine burner investigated by LIF and chemiluminescence

机译:LIF和化学发光技术研究了稳定涡旋燃气轮机燃烧器中的热声驱动火焰运动和放热变化

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摘要

Laser-induced fluorescence and chemiluminescence, both phase-locked to the dominant acoustic oscillation, are used to investigate phenomena related to thermoacoustic instability in a swirl-stabilized industrial scale gas turbine burner. The observed sinusoidal phase-averaged flame motion in axial (main flow) direction is analyzed using different schemes for defining the flame position. Qualitative agreement between experimental data and theoretical analysis of the observed flame motion is obtained, interpreted as originating primarily from variation of the burning velocity. The heat release variation during an acoustic cycle is determined from the sinusoidally varying total OH* chemiluminescence intensity.
机译:激光诱导的荧光和化学发光均被锁相到主要的声振荡,用于研究与旋流稳定的工业规模燃气轮机燃烧器中的热声不稳定性有关的现象。使用定义火焰位置的不同方案,分析了在轴向(主流)方向上观察到的正弦相位平均火焰运动。获得了实验数据与观察到的火焰运动的理论分析之间的定性一致性,这被解释为主要源于燃烧速度的变化。根据正弦变化的总OH *化学发光强度确定声学循环中的放热变化。

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  • 来源
    《Experiments in Fluids》 |2008年第1期|167-182|共16页
  • 作者单位

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

    Paul Scherrer Institut 5232 Villigen PSI Switzerland;

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