论文标题

间歇性和继发性分叉在旋转稳定环形燃烧器中的纵向热声不稳定性的动力学

Flame dynamics during intermittency and secondary bifurcation to longitudinal thermoacoustic instability in a swirl-stabilized annular combustor

论文作者

Roy, Amitesh, Singh, Samarjeet, Nair, Asalatha, Chaudhuri, Swetaprovo, Sujith, R I

论文摘要

在这项针对具有16个旋转稳定的燃烧器的实验室规模的湍流环燃烧器的实验研究中,我们研究了与燃烧器纵向模式相关的不同动力学状态中的火焰燃料和火焰声相互作用。我们同时使用高速摄像头测量火焰的声压力和CH*化学发光发射。在增加等效比率后,燃烧器经历以下过渡序列:燃烧噪声(CN)到低振幅纵向热声不稳定性(TAI),通过间歇性(INT)状态(tai),从低振幅到高幅度纵向纵向tai。我们向湍流热声系统报告了从低振幅TAI到高振幅TAI的次级分叉的第一个证据,这使我们能够在自然环境下在两种不同的扰动幅度下测试火焰响应。我们发现在间歇性的周期部分以及低振幅TAI的周期性部分中,火焰相互作用的动力学有显着差异。具体而言,在间歇性的周期性部分期间,从各种燃烧器测得的局部热释放速率(HRR)之间的相位差显示出显着的相位滑动。在低振幅TAI期间,燃烧器的HRR响应之间的相位较少,这导致火焰之间的同步弱状态。在高振幅TAI期间,我们发现火焰之间以及压力波动的完美同步。然后,我们使用Kuramoto Order参数和相锁值量化了不同火焰之间的时间和空间同步程度,以及火焰和压力波动。我们表明,同步理论可以方便地用于表征和量化环形燃烧器中的火焰声相互作用。

In this experimental study on a laboratory-scale turbulent annular combustor with sixteen swirl-stabilized burners, we study the flame-flame and flame-acoustic interactions during different dynamical states associated with the longitudinal mode of the combustor. We simultaneously measure the acoustic pressure and CH* chemiluminescence emission of the flame using a high-speed camera. Upon increasing the equivalence ratio, the combustor undergoes the following sequence of transition: combustion noise (CN) to low amplitude longitudinal thermoacoustic instability (TAI) through the state of intermittency (INT), and from low amplitude to high amplitude longitudinal TAI through a secondary bifurcation. We report the first evidence of secondary bifurcation from low amplitude TAI to high amplitude TAI for a turbulent thermoacoustic system which allows us to test the flame response at two different amplitude of perturbation in a natural setting. We find a significant difference in the dynamics of the flame interactions during the periodic part of intermittency and low and high amplitude TAI. Specifically, during the periodic part of intermittency, the phase difference between the local heat release rate (HRR) measured from various burners show significant phase slips in time. During low amplitude TAI, there are fewer phase slips among the HRR response of the burners, which result in a state of weak synchronization among the flames. During high amplitude TAI, we find that the flames are in perfect synchrony amongst themselves and with the pressure fluctuations. We then quantify the degree of temporal and spatial synchronization between different flames, and flames and pressure fluctuations using the Kuramoto order parameter and the phase-locking value. We show that synchronization theory can be conveniently used to characterize and quantify flame-acoustic interactions in an annular combustor.

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