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首页> 外文期刊>International Journal of Modern Physics: Conference Series >NUMERICAL INVESTIGATION OF THE ACOUSTIC DAMPING OF PLANE ACOUSTIC WAVES BY PERFORATED LINERS WITH BIAS FLOW
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NUMERICAL INVESTIGATION OF THE ACOUSTIC DAMPING OF PLANE ACOUSTIC WAVES BY PERFORATED LINERS WITH BIAS FLOW

机译:偏流渗流线对平面声波声阻尼的数值研究。

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Perforated liners are extensively used in aero-engines and gas turbine combustors to suppress combustion instabilities. These liners, typically subjected to a low Mach number bias flow (a cooling flow through perforated holes), are fitted along the bounding walls of a combustor to convert acoustic energy into flow energy by generating vorticity at the rims of the perforated apertures. To investigate the acoustic damping of such liners with bias flow on plane acoustic waves, a time-domain numerical model is developed to compute acoustic wave propagation in a cylindrical duct with a single-layer liner attached. The damping mechanism of the liner is characterized in real-time by using a 'compliance', developed especially for this work. It is a rational function representation of the frequency-domain homogeneous compliance adapted from the Rayleigh conductivity of a single aperture with mean bias flow in the z-domain. The liner 'compliance' model is then incorporated into partial differential equations of the duct system, which are solved by using the method of lines. The numerical results are then evaluated by comparing with the numerical results of Eldredge and Dowling's frequency-domain model. Good agreement is observed. This confirms that the model and the approach developed are suitable for real-time characterizing the acoustic damping of perforated liners.
机译:穿孔衬里广泛用于航空发动机和燃气轮机燃烧室,以抑制燃烧不稳定性。这些衬里通常经受低马赫数的偏流(通过穿孔的冷却流),沿着燃烧室的边界壁安装,以通过在穿孔孔的边缘产生涡旋将声能转换为流能。为了研究在平面声波上带有偏流的此类衬管的声阻尼,建立了时域数值模型以计算声波在附有单层衬管的圆柱管中的传播。衬套的阻尼机制通过使用“合规性”来实时表征,“合规性”是专门为此工作开发的。它是频域同质顺应性的有理函数表示,其适应于单个孔径的瑞利电导率,在z域中具有平均偏置流。然后将衬管“顺应性”模型合并到风管系统的偏微分方程中,可通过使用线法对其进行求解。然后,通过与Eldredge和Dowling的频域模型的数值结果进行比较来评估数值结果。观察到良好的一致性。这证实了所开发的模型和方法适用于实时表征穿孔衬管的声学阻尼。

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