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Premixed flame response to helical disturbances: Mean flame non-axisymmetry effects

机译:预混火焰对螺旋干扰的响应:平均火焰非轴对称效应

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A key component of the thermoacoustic instability feedback mechanism is the excitation of hydrodynamic flow disturbances by narrowband acoustic fluctuations. In earlier work, we considered the response of time averaged axisymmetric flames to helical disturbances. That study showed that although all helical modes cause local flame wrinkling, only the axisymmetric hydrodynamic mode, m = 0, contributes to the global heat release rate fluctuations. This paper extends this work to consider time-averaged flames that are nonaxisymmetric. We show that distortions of the unforced flame shape changes its receptivity to helical disturbances, as it does not allow for the perfect destructive interference seen in axisymmetric flames. This results in a non-zero global flame response contribution from helical modes. Given that helical modes often have the largest amplitudes in jet flows, particularly those with swirl, these results show that the degree of non-axisymmetry of the flame has an important influence in determining which hydrodynamic modes, axisymmetric or helical, control the global heat release response of the flame. These points have been illustrated with example calculations that show how different control parameters and the degree of time-averaged nonaxisymmetry influence the global flame response. An important implication of these results relates to scaling results from simplified geometries where a round jet is placed inside a round enclosure, to more realistic ones (such as where multiple jets are placed next to each other) where the flame shape will be distorted from being perfectly circular. (C) 2015 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:热声不稳定性反馈机制的关键组成部分是由窄带声波波动激发流体动力流动扰动。在早期的工作中,我们考虑了时间平均的轴对称火焰对螺旋扰动的响应。该研究表明,尽管所有螺旋模式都会引起局部起皱,但只有轴对称流体动力模式m = 0才有助于整体放热率波动。本文将这项工作扩展为考虑非轴对称的时间平均火焰。我们表明,无力火焰形状的变形会改变其对螺旋形扰动的接受度,因为它不允许在轴对称火焰中看到完美的破坏性干涉。这导致螺旋模式产生非零的整体火焰响应贡献。考虑到螺旋模式通常在射流中具有最大振幅,特别是在涡流中,这些结果表明,火焰的非轴对称程度对确定哪种流体动力学模式(轴对称或螺旋形)控制总体放热有重要影响。火焰的反应。这些点已通过示例计算进行了说明,这些计算显示了不同的控制参数和时间平均非轴对称程度如何影响整体火焰响应。这些结果的重要含义与缩放结果有关,这些缩放结果来自简化的几何形状(其中将圆形喷嘴放置在圆形外壳内)到更现实的尺寸(例如,多个喷嘴彼此相邻放置),在这种形状下火焰形状会变形完美的圆形。 (C)2015年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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