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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Time Scale Model for the Prediction of the Onset of Flame Flashback Driven by Combustion Induced Vortex Breakdown
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Time Scale Model for the Prediction of the Onset of Flame Flashback Driven by Combustion Induced Vortex Breakdown

机译:时标模型,用于预测由燃烧引起的涡旋破坏驱动的火焰反燃的发生

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摘要

Flame flashback driven by combustion induced vortex breakdown (CIVB) represents one of the most severe reliability problems of modern gas turbines with swirl stabilized combustors. Former experimental investigations of this topic with a 500 kW burner delivered a model for the prediction of the CIVB occurrence for moderate to high mass flow rates. This model is based on a time scale comparison. The characteristic time scales were chosen following the idea that quenching at the flame tip is the dominating effect preventing upstream flame propagation in the center of the vortex flow. Additional numerical investigations showed that the relative position of the flame regarding the recirculation zone influences the interaction of the flame and flow field. The recent analysis on turbulence and chemical reaction of data acquired with high speed measurement techniques applied during the CIVB driven flame propagation by the authors lead to the extension of the prediction model. As the corrugated flame regimes at the flame tip prevails at low to moderate mass flow rates, a more precise prediction in this range of mass flow rates is achieved using a characteristic burnout time τ_b~l IS_l for the reactive volume. This paper presents first this new idea, confirms it then with numerical as well as experimental data, and extends finally the former model to a prediction tool that can be applied in the full mass flow range of swirl burners.
机译:由燃烧引起的涡旋破坏(CIVB)驱动的火焰回火代表了具有旋流稳定燃烧器的现代燃气轮机最严重的可靠性问题之一。使用500 kW燃烧器对该主题进行的前实验研究提供了一个模型,用于预测中等到高质量流量下CIVB的发生。该模型基于时间尺度比较。选择特征性的时间尺度是基于这样的想法,即在火焰尖端淬火是防止上游火焰在涡流中心传播的主要作用。附加的数值研究表明,火焰在回流区的相对位置会影响火焰与流场的相互作用。作者最近对在CIVB驱动的火焰传播过程中使用高速测量技术获取的数据进行的湍流和化学反应分析导致了预测模型的扩展。由于在低至中等的质量流量下火焰尖端处的波纹火焰状态占优势,因此使用反应堆的特征燃尽时间τ_b〜l IS_1可以在质量流量范围内实现更精确的预测。本文首先介绍了这个新想法,然后通过数值和实验数据对其进行了确认,最后将以前的模型扩展到可以在旋流燃烧器的整个质量流量范围内应用的预测工具。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2010年第4期|041503.1-041503.6|共6页
  • 作者

    M. Konle; T. Sattelmayer;

  • 作者单位

    Lehrstuhl fuer Thermodynamik, TU Muenchen, Boltzmannstrasse 15, Garching D-85748, Germany;

    Lehrstuhl fuer Thermodynamik, TU Muenchen, Boltzmannstrasse 15, Garching D-85748, Germany;

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