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5 kHz thermometry in a swirl-stabilized gas turbine model combustor using chirped probe pulse femtosecond CARS. Part 2. Analysis of swirl flame dynamics

机译:在chi稳定的燃气轮机模型燃烧器中使用using脉冲探测飞秒飞车进行5 kHz测温。第2部分。旋流火焰动力学分析

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摘要

We have performed a detailed analysis of the temperature field in a turbulent swirl flame operating with a self-excited thermo-acoustic instability. The temperature field was measured using 5 kHz chirped probe-pulse (CPP) femtosecond (fs) coherent anti-Stokes Raman scattering (CARS). The measurements are described in detail in the part 1 companion article. In this paper, part 2, a detailed analysis of the time resolved temperature measurements and simultaneous pressure measurements is performed to provide insight into the dynamics and structure of the swirl-stabilized flame. This work is the first to capture the dynamics of the flame, flow, and coupled flow-flame processes using high-fidelity, spatially-and temporally-resolved thermometry in a flame of practical relevance. The time-averaged contour plot of the temperature field indicates that the flame is very flat and stabilizes approximately 10 mm downstream of the burner face. In this region, there are very significant temperature fluctuations indicating a very high level of unsteadiness. The temperature probability distribution functions (PDFs) are dearly bimodal in this region near the injector face. A Fourier analysis of the temperature time series revealed multiple coherent oscillatory modes. The strongest oscillation was found to be coherent and in-phase with an acoustic resonance at 314 Hz, as expected from the Rayleigh criteria for the unstable flame. An analysis of the phase-conditioned average temperature fields dearly shows an axial pumping of low-temperature reactants, which are consumed after a convective delay and result in a spike in the global heat-release rate. Continued analysis also revealed a 438 Hz oscillation that was found to correspond with the dynamics of convective transport by a helical precessing vortex core (PVC). The structure of the PVC, and its interaction with the flame, were studied based on the presence of this characteristic frequency in the power spectral densities computed throughout the flow. The precision and time-resolution of the CPP fsCARS measurements was also sufficient to enable computation of the integral time-scales as well as the PDFs of the temporal temperature gradients. A sample of state space trajectories were used to provide insight into the nature of coupling between the narrowband acoustic resonance and the broadband spectrum of turbulent flame processes. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:我们对自激热声不稳定的湍流涡旋火焰中的温度场进行了详细分析。使用5 kHz 5探针(CPP)飞秒(fs)相干抗斯托克斯拉曼散射(CARS)测量温度场。有关测量的详细信息,请参见第1部分。在本文的第2部分中,对时间分辨温度测量和同时进行的压力测量进行了详细分析,以深入了解旋流稳定火焰的动力学和结构。这项工作是首次在实际相关的火焰中使用高保真度,空间和时间分辨的测温法捕获火焰,流动和耦合流动火焰过程的动力学。温度场的时间平均等高线图表明火焰非常平坦,并且在燃烧器表面下游约10 mm处稳定。在该区域,温度波动非常大,表明非常不稳定。温度概率分布函数(PDF)在喷油器端面附近的该区域中几乎是双峰的。温度时间序列的傅立叶分析显示出多个相干振荡模式。如对不稳定火焰的瑞利标准所预期的,发现最强的振荡是相干且同相的,并且在314 Hz处有声共振。对相调节的平均温度场的分析清楚地显示出轴向反应的低温反应物,这些反应物在对流延迟后被消耗,并导致整体放热率急剧上升。继续进行的分析还揭示了一个438 Hz的振荡,该振荡被发现与螺旋旋进旋涡芯(PVC)的对流传输动力学相对应。基于在整个流动过程中计算出的功率谱密度中该特征频率的存在,研究了PVC的结构及其与火焰的相互作用。 CPP fsCARS测量的精度和时间分辨率也足以实现积分时间尺度以及时间温度梯度PDF的计算。使用状态空间轨迹样本来深入了解窄带声共振与湍流火焰过程的宽带频谱之间的耦合性质。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2016年第11期|454-467|共14页
  • 作者单位

    Purdue Univ, Sch Aeronaut & Astronaut, 701 W Stadium Ave, W Lafayette, IN 47907 USA;

    Purdue Univ, Sch Mech Engn, 585 Purdue Mall, W Lafayette, IN 47907 USA;

    German Aerosp Ctr DLR, Inst Combust Technol, Pfaffenwaldring 38-40, D-70569 Stuttgart, Germany;

    German Aerosp Ctr DLR, Inst Combust Technol, Pfaffenwaldring 38-40, D-70569 Stuttgart, Germany;

    Purdue Univ, Sch Mech Engn, 585 Purdue Mall, W Lafayette, IN 47907 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Swirl flame; Gas turbine; Laser diagnostics; Femtosecond CARS; Thermometry;

    机译:旋流火焰;燃气轮机;激光诊断;飞秒汽车;温度计;

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