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Reconstruction of heat release rate disturbances based on transmission of ultrasounds: Experiments and modeling for perturbed flames

机译:基于超声波传输的热量释放速率扰动的重构:火焰扰动的实验和建模

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摘要

Heat release rate fluctuations cause recurrent problems in many steady operating combustors. Direct measurements are difficult and these fluctuations are generally inferred from optical diagnostics. An alternative acoustic method was recently developed and is validated here in the case of unconfined laminar premixed flames submitted to harmonic flow modulations. The technique relies on determining the transmission time of frequency-modulated ultrasounds propagating through the perturbed flow. The transmission of ultrasounds is altered by the perturbed interface between the burned gases and ambient air and by the perturbed flame front. A theoretical link between the dynamics of these two interfaces is derived for small low frequency perturbations. The predicted shapes taken by these interfaces are compared with two-color Schlieren images. This model is then used to determine the resulting heat release rate fluctuations and corresponding disturbances in the transmission time of ultrasounds. An analytical expression is derived for the transfer function between heat release rate and sound transmission time disturbances as a function of frequency when these conical flames are submitted to harmonic flow disturbances. Measurements made with this acoustic technique are compared to analytical predictions and to optical measurements exploiting the chemiluminescence emission from the flame. Effects of the forcing frequency and modulation level are examined. Results indicate a good match between predictions and measurements for the gain and phase of the transfer functions of the lean and stoichiometric unconfined flames investigated when the input level is not too large. Issues and perspectives are then briefly discussed to extend this heat release rate measurement technique to practical configurations.
机译:放热速率的波动会导致许多稳定运行的燃烧器中出现反复出现的问题。直接测量很困难,这些波动通常是从光学诊断中推断出来的。最近开发了另一种声学方法,并在无限制层流预混火焰经受谐波流调制的情况下在此处得到验证。该技术依赖于确定通过扰动流传播的调频超声的传输时间。超声波的传输通过燃烧气体和周围空气之间的扰动界面和火焰前扰动来改变。对于较小的低频扰动,得出了这两个界面动力学之间的理论联系。将这些界面所采用的预测形状与两色Schlieren图像进行比较。然后,该模型用于确定最终的放热率波动以及超声波传输时间中的相应干扰。当这些锥形火焰受到谐波流扰动时,导出了放热率和声音传播时间扰动之间的传递函数的解析表达式,该传递函数是频率的函数。用这种声学技术进行的测量与分析预测以及利用火焰化学发光发射的光学测量进行比较。检查了强制频率和调制级别的影响。结果表明,当输入水平不太大时,对稀薄和化学计量无侧限火焰的传递函数的增益和相位的预测和测量值之间的匹配良好。然后简要讨论了问题和观点,以将该放热率测量技术扩展到实际配置。

著录项

  • 来源
    《Combustion and Flame》 |2013年第9期|1779-1788|共10页
  • 作者单位

    CNRS, UPR 288 Laboratoire d'Energetique Moleculaire et Macroscopique Combustion (EM2C), Grande Voie des Vignes, 92295 Chatenay-Malabry, France Ecole Centrale Paris, Grande Voie des Vignes, 92295 Chatenay-Malabry, France;

    CNRS, UPR 288 Laboratoire d'Energetique Moleculaire et Macroscopique Combustion (EM2C), Grande Voie des Vignes, 92295 Chatenay-Malabry, France Ecole Centrale Paris, Grande Voie des Vignes, 92295 Chatenay-Malabry, France;

    CNRS, UPR 288 Laboratoire d'Energetique Moleculaire et Macroscopique Combustion (EM2C), Grande Voie des Vignes, 92295 Chatenay-Malabry, France Ecole Centrale Paris, Grande Voie des Vignes, 92295 Chatenay-Malabry, France;

  • 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

    Ultrasounds; Diagnostic; Chirp signal; Flame dynamics; Heat release rate;

    机译:超声波;诊断;线性调频信号火焰动力学;放热率;
  • 入库时间 2022-08-18 00:11:52

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