Flame Response of a Lean Premixed Swirl Flame to High Frequency Azimuthal Forcing

Tobias O. Mangold, A. Orchini, C. Paschereit, J. Moeck, Myles D. Bohon
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Abstract

This experimental study explores fundamental qualitative differences of the response of a lean-premixed turbulent swirl flame to azimuthal acoustic excitation in the low- (LF), medium- (MF), and high-frequency (HF) regime. An experimental test rig with a cylindrical combustion chamber is equipped with an array of azimuthally distributed acoustic driver outlets in the burner front plate, allowing for the excitation of the flame with a longitudinal wave, and different azimuthal wave types. Phase-averaged chemiluminescence images show that in the LF regime the flame responds to both longitudinal and azimuthal forcing schemes with hydrodynamically induced intensity fluctuation patterns at relatively small wavelength. Azimuthal forcing generates helical intensity patterns, at the same wavelengths but with lower intensities compared to longitudinal forcing. A fundamentally different flame response is observed in the HF regime: Longitudinal forcing generates only a very weak flame response, and the amplitude of the flame response to azimuthal forcing type depends on the forced azimuthal mode. No hydrodynamic structures are evident anymore, but the flame response now uniformly covers each of the flame sides, indicating a purely acoustic response.
稀薄预混涡流火焰对高频方位力的火焰响应
本实验研究探讨了稀薄预混涡流火焰在低(LF)、中(MF)和高频(HF)条件下对方位声激励的响应的本质差异。在圆柱形燃烧室的实验试验台上,燃烧器前板上安装了一组方位角分布的声驱动出口,允许用纵波和不同方位角波类型激励火焰。相平均化学发光图像表明,在低强度条件下,火焰对纵向和方位强迫方案都有响应,在相对较小的波长处具有流体动力诱导的强度波动模式。与纵向强迫相比,方位强迫在相同波长下产生螺旋强度模式。在高频状态下观察到一个根本不同的火焰响应:纵向强迫只产生一个非常弱的火焰响应,而火焰响应的幅度取决于强迫的方位角模式。不再有明显的水动力结构,但火焰响应现在均匀地覆盖每一个火焰边,表明一个纯粹的声学响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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