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Time-resolved PIV of lean premixed combustion without and with porous inert media for acoustic control

机译:不带多孔惰性介质的稀薄预混燃烧的时间分辨PIV,用于声学控制

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In the past, we have documented the efficacy of the ring-shaped porous inert media (PIM) to passively mitigate combustion noise and thermo-acoustic instabilities in lean premixed (LPM) swirl-stabilized combustion systems, although the underlying mechanisms involved have not been understood. The present study utilizes time-resolved particle image velocimetry (PIV) to measure the turbulent flow field in a LPM combustion system without and with PIM placed on the dump plane. Measurements of instantaneous and average flow fields, vorticity, and turbulent kinetic energy are presented to gain insight into the flow structure. Results are, analyzed using the proper orthogonal decomposition (POD) to identify the effect of PIM on the coherent turbulent structures in the flow field. The addition of PIM removes the recirculation zones and the dominant coherent turbulent structures formed in the shear layers are convected downstream of the reaction zone. Harmonic reconstruction of the flow field is performed at the frequency of thermo-acoustic instability to identify the relationship between the flow and acoustic fields of the system. Without PIM, the vortical modes in the corner recirculation zone are shown to be the driving source for the instability. PIM alters the flow field from global instability to convective instability, which effectively eliminates the feedback mechanism for thermo-acoustic instabilities in the present LPM swirl-stabilized combustion system. (C) 2014 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:过去,我们已经证明了环形多孔惰性介质(PIM)可以有效地减轻稀薄预混(LPM)旋流稳定燃烧系统中的燃烧噪声和热声不稳定性的功效,尽管所涉及的潜在机理尚未得到证实。了解。本研究利用时间分辨粒子图像测速仪(PIV)在没有将PIM放置在倾卸平面上的情况下和LIM燃烧系统中测量LPM燃烧系统中的湍流场。给出了瞬时和平均流场,涡度和湍动能的测量值,以深入了解流场结构。使用适当的正交分解(POD)分析结果,以识别PIM对流场中相干湍流结构的影响。 PIM的添加消除了回流区,并且在剪切层中形成的主要相干湍流结构在反应区的下游对流。以热声不稳定性的频率执行流场的谐波重构,以识别系统的流场和声场之间的关系。如果没有PIM,则表明转角再循环区域中的涡旋模式是不稳定的驱动源。 PIM将流场从整体不稳定性更改为对流不稳定性,从而有效消除了当前LPM旋流稳定燃烧系统中热声不稳定性的反馈机制。 (C)2014年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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