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Flame dynamics of a variable swirl number system and instability control

机译:可变旋流数系统的火焰动力学和不稳定性控制

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摘要

Swirling flame dynamics is investigated using a radial swirler equipped with movable blades. This device allows to continuously change the swirl number and to examine various flame configurations while keeping fixed values of mass flow rate, equivalence ratio, and other system parameters. This is used to reveal two types of thermo-acoustic instabilities, the first giving rise to a low frequency bulk oscillation while the second corresponds to a higher frequency mode. Because the swirl number plays a central role in this analysis, it is here deduced from measured axial and azimuthal velocity profiles under stable operating conditions. It is first found that values deduced from experimental profiles are lower than those estimated from standard expressions relying on geometrical parameters of the swirler. A modified expression derived for swirlers without central insert is proposed that improves swirl number estimates. Systematic variations of the swirl number indicate that the flow features a central recirculation zone when this number is sufficiently large and that a precessing vortex core (PVC) exists under cold flow and reactive conditions for measured swirl numbers exceeding 0.45. Velocity, chemiluminescence, and pressure signals are then used to identify frequencies corresponding to the PVC, self-sustained thermo-acoustic oscillations, and the difference frequency of the previous components. The flame transfer function when the burner is submitted to harmonic flow rate modulations is then determined by progressively increasing the swirler blade angle. As the swirl number is augmented, it is found that the phase lag decreases for a fixed forcing frequency while the transfer function gain covers a broader frequency range. These data are finally used in a linear stability analysis to identify the origin of combustion instabilities observed in the present experiment. It is shown that the time lag between velocity perturbations at the burner outlet and resulting heat release rate disturbances strongly depends on the swirler blade angle. It is also demonstrated that the adjustable blade angle swirler could be used in principle to control the flame dynamics and avoid regions of instability.
机译:使用配备可移动叶片的径向旋流器研究了旋流火焰动力学。该设备可以连续改变旋流数并检查各种火焰配置,同时保持质量流量,当量比和其他系统参数的固定值。这用于揭示两种类型的热声不稳定性,第一种引起低频整体振荡,而第二种则对应于高频模式。由于旋流数在该分析中起着核心作用,因此它是在稳定运行条件下从测得的轴向和方位角速度分布中得出的。首先发现,根据实验轮廓推断出的值要比根据旋流器的几何参数根据标准表达式估算出的值要低。提出了针对不带中心插入件的旋流器的改进表达式,该表达式可改进旋流数估计。旋流数的系统变化表明,当该旋流数足够大时,该流具有中央再循环区,并且在测得的旋流数超过0.45的冷流和反应条件下,存在旋进的旋涡芯(PVC)。然后,使用速度,化学发光和压力信号来识别与PVC相对应的频率,自持的热声振荡以及先前组件的差频。然后,通过逐渐增加旋流器叶片角度来确定燃烧器进行谐波流量调制时的火焰传递函数。随着旋流数的增加,发现对于固定的强制频率,相位滞后会减小,而传递函数增益会覆盖更宽的频率范围。这些数据最终用于线性稳定性分析,以识别在本实验中观察到的燃烧不稳定性的根源。结果表明,燃烧器出口处的速度扰动与产生的放热速率扰动之间的时间差很大程度上取决于旋流器叶片的角度。还证明了可调叶片角旋流器原则上可用于控制火焰动力学并避免不稳定区域。

著录项

  • 来源
    《Combustion and Flame》 |2013年第9期|1729-1742|共14页
  • 作者单位

    CNRS, UPR 288, Laboratoire d'Energetique, Moleculaire et Macroscopique, Combustion (EM2C), Grande Voie des Vignes, 92290 Chatenay-Malabry, France,Ecole Centrale Paris, Grande Voie des Vignes, F-92290 Chatenay-Malabry, France;

    CNRS, UPR 288, Laboratoire d'Energetique, Moleculaire et Macroscopique, Combustion (EM2C), Grande Voie des Vignes, 92290 Chatenay-Malabry, France,Ecole Centrale Paris, Grande Voie des Vignes, F-92290 Chatenay-Malabry, France;

    CNRS, UPR 288, Laboratoire d'Energetique, Moleculaire et Macroscopique, Combustion (EM2C), Grande Voie des Vignes, 92290 Chatenay-Malabry, France,Ecole Centrale Paris, Grande Voie des Vignes, F-92290 Chatenay-Malabry, France;

    Ecole Centrale Paris, Grande Voie des Vignes, F-92290 Chatenay-Malabry, France;

    Plateforme Prototypage Microtechniques, Lycee Edgar Faure, 25500 Morteau, France;

    CNRS, UPR 288, Laboratoire d'Energetique, Moleculaire et Macroscopique, Combustion (EM2C), Grande Voie des Vignes, 92290 Chatenay-Malabry, France,Ecole Centrale Paris, Grande Voie des Vignes, F-92290 Chatenay-Malabry, France;

    CNRS, UPR 288, Laboratoire d'Energetique, Moleculaire et Macroscopique, Combustion (EM2C), Grande Voie des Vignes, 92290 Chatenay-Malabry, France,Ecole Centrale Paris, Grande Voie des Vignes, F-92290 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

    Swirling flows; Precessing vortex core; Flame transfer function; Flame dynamics; Combustion instability;

    机译:旋流;旋进旋涡芯;火焰传递功能;火焰动力学;燃烧不稳定;
  • 入库时间 2022-08-18 00:11:50

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