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EXPERIMENTAL INVESTIGATION OF THERMO ACOUSTIC OSCILLATIONS IN SYNGAS PREMIXED MULTI-SWIRLER MODEL COMBUSTORS

机译:SYNGAS预混多旋流模型燃烧器中热声振荡的实验研究

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This paper presents the experimental results of the thermoacoustic oscillations in several premixed syngas multi-swirler model combustors. Multi-swirler lean premixed combustion technology has been successfully applied to achieve an anticipative stability, lower noise and high efficiency in industrial gas turbines that burn natural gas or distillated oil. However, some critical operational issues, including combustion oscillations, flashback, blowout and autoignition, should be considered and balanced when burning the coal-derived syngas mainly composed of H_2 and CO. In this paper several multi-swirler combustors are tested on an atmospheric-pressure downscaled test rig. Each multi-swirler combustor includes several elemental swirling nozzles with the equal Swirl Number and different array of port configurations. The dynamic pressure, dynamic heat release and critical flashback equivalence ratio are tested in these model combustors burning several kinds of simulated syngases with a similar low heat value. Firstly, the critical equivalence ratios of flashback are shown and compared with those in single-swirler combustors. Secondly, the paper presents the analysis of the temporal and spectral features of dynamic pressure oscillations using many data-processing methods. Thirdly, we describe the bifurcation and retardation phenomenon when the combustion transforms between stable and unstable operations. We also discuss how the equivalence ratio, the fuel composition and the combustor inlet velocity play important roles in determining the amplitudes, the frequencies, the bifurcation and retardation of the thermoacoustic oscillations. Finally, we use a wavelet transformation with a higher resolution in time domain than that with a PSD estimation by the AR model. The processes of amplitude "jump" and flashback are analyzed in details. The results in this paper could improve the current understanding of the nonlinear self-excited and combustion driven thermoacoustic oscillations in gas turbines and give us some references to the development of lean premixed syngas turbines for coal-based IGCC and co-generation systems.
机译:本文介绍了几种预混合成气多旋流器模型燃烧器中热声振荡的实验结果。已经成功地应用了多旋精精燃烧技术,以实现预测稳定性,降低噪音和燃烧天然气或蒸馏油的工业燃气涡轮机的高效率。但是,在燃烧燃煤的合成气时,应考虑和平衡一些关键的操作问题,包括燃烧振荡,闪回,井喷和自燃,主要由H_2和CO组成。在本文中,在大气中测试了几种多旋流器燃烧器。压力缩小式试验台。每个多旋流器燃烧器包括具有相等旋流数和不同的端口配置阵列的多个元素旋转喷嘴。在这些模型燃烧器中测试动态压力,动态热释放和临界闪回等效率燃烧了几种具有相似低热值的模拟的Syngiss。首先,与单旋流器燃烧器中的那些相比,显示了闪回的关键等效比。其次,本文介绍了使用许多数据处理方法的动态压力振荡的时间和光谱特征的分析。第三,当燃烧在稳定和不稳定的操作之间变换时,我们描述了分叉和延迟现象。我们还讨论了等效比如何,燃料组合物和燃烧器入口速度在确定幅度,频率,分叉和热声振荡的延迟时起着重要作用。最后,我们使用时间域中具有更高分辨率的小波变换,而不是AR模型的PSD估计。详细分析了幅度“跳跃”和闪回的过程。本文的结果可以改善目前对燃气轮机中非线性自我激发和燃烧驱动热声振荡的目前的理解,并给我们一些参考煤基IGCC和共同产生系统的精益预混合成涡轮机的开发。

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