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TRANSIENT THERMOACOUSTIC RESPONSES OF METHANE/HYDROGEN FLAMES IN A PRESSURIZED ANNULAR COMBUSTOR

机译:甲烷/氢火焰在加压环形燃烧器中的瞬态热声反应

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The present article experimentally investigates the triggering and transient growth of azimuthal instabilities in a pressurized laboratory-scale annular combustor featuring twelve methane/hydrogen flames, as the equivalence ratio is ramped up and down. The ramping rate of equivalence ratio is varied to examine its effect on the transient thermoacoustic response and the driving mechanisms, highlighting a number of previously unseen features. As the equivalence ratio is dynamically increased, all cases were observed to feature a distinct modal trajectory, during the onset of high amplitude instabilities. Strongly spinning counterclockwise modes are first excited before a dynamic transition to strongly spinning clockwise modes occurs. Furthermore, the strength of the spinning mode (quantified through the spin ratio or nature angle) was shown to feature a local minima before the spinning mode stabilized in the system, which corresponds to an almost pure spinning state. Hysteresis behaviour was observed in both the amplitude and nature of the mode, resulting in different thresholds for the onset and decay of the instability, depending on the time history of the combustor. Increasing the ramping rate was found to reduce the amount of hysteresis in the system. Furthermore, the high amplitude of the instability resulted in significant harmonic components. The behaviour of the harmonics generally resembles the fundamental component, albeit with some notable exceptions.
机译:本文实验研究了在具有12个甲烷/氢火焰的加压实验室型环形燃烧器中的方位形稳定性的触发和瞬态生长,随着当量比上下倾斜。等效率的升高率变化以检查其对瞬态热声反应和驱动机制的影响,突出了一些先前看不见的特征。随着等效比率动态增加,在高幅度不稳定性的发作期间,观察到所有情况都被观察到具有明显的模态轨迹。在发生时顺时针模式的动态转换之前首先激发强烈旋转的逆时针模式。此外,示出了纺丝模式(通过旋转比或自然角度量化)的强度示出,在系统中稳定的纺丝模式之前具有局部最小值,这对应于几乎纯的纺丝状态。在模式的幅度和性质中观察到滞后行为,从而取决于燃烧器的时间历史,导致对发作和衰减的阈值的不同阈值。发现增加斜坡率来减少系统中滞后量。此外,不稳定性的高幅度导致显着的谐波分量。谐波的行为通常类似于基本组件,尽管具有一些显着的例外。

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