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首页> 外文期刊>Journal of Mechanical Science and Technology >Acoustic damping characterization of a double-perforated liner in an aero-engine combustor
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Acoustic damping characterization of a double-perforated liner in an aero-engine combustor

机译:空气发动机燃烧器中双穿孔衬里的声学阻尼表征

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摘要

Double-perforated liners are widely used in gas turbine combustors because of their improved thermal load characteristics and broader acoustic damping compared with single-layer perforations. The present study examines the absorption of normal-incidence acoustic waves by double perforated liner, and provides quantitative analysis results on the effects of key liner parameters on the acoustic damping characteristics using the electro-acoustic analogy method. The developed impedance model is successfully validated against the measured data in the literature. Then, the impedance model is applied to the design of a double-perforated liner in the aero-engine combustor under development and the optimal liner design results are shown in terms of acoustic damping. It is found that the dome plate porosity and the plate gap, which is the space between the dome and splash plate, have a major impact on acoustic absorption for a given combustor geometry and flow condition. In contrasts, the splash porosity and plate thickness have minor significance over frequency range of interest. Thus, the optimized liner configurations are proposed from the viewpoint of acoustic damping.
机译:双孔衬里广泛用于燃气涡轮机燃烧器,因为它们改善了与单层穿孔相比的热负荷特性和更宽的声学阻尼。本研究检查了双穿孔衬里的正常入射声波的吸收,并提供了定量分析结果,导致使用电声模拟方法对声学阻尼特性对声学阻尼特性的影响。开发的阻抗模型用于针对文献中的测量数据成功验证。然后,阻抗模型应用于在开发的空气发动机燃烧器中的双穿孔衬里的设计,并且在声阻尼方面示出了最佳衬里设计结果。发现圆顶板孔隙率和板间隙,即圆顶和飞溅板之间的空间,对给定的燃烧器几何形状和流动条件具有主要影响声学吸收。相反,飞溅孔隙率和板厚度对频率范围具有较小的意义。因此,从声阻尼的观点来看,提出了优化的衬里配置。

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