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Comparison Between Postprocessing Methods Applied to Rotor-Stator-Interaction Tone-Noise Problems

机译:转子-定子相互作用音噪声问题后处理方法之间的比较

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摘要

The range of applicability and accuracy of the major postprocessing methods available today to extract tone-noise information from unsteady aerodynamic source data for the rotor-stator-interaction problem are systematically examined using four numerical examples of increasing geometric and flow complexity. The test cases span from the benchmark problem of a vortical gust impinging on an unloaded cascade of flat plates to a fan stage representative of a modern turbofan engine. A linearized Navier-Stokes computational fluid dynamics method is used to obtain the aerodynamic solutions for the tone-noise postprocessing. The underlying assumptions of each postprocessing method are examined, highlighting the shortcomings and the strengths of each method. In particular, the effects of the duct geometry and mean flow are investigated. An acoustic analogy integral method, and various wave-splitting techniques are considered. Furthermore, the influence of the nonuniformity and swirl that characterize the mean flow in a real fan stage on the sound power conservation is examined using a modal expression of the sound power for nonuniform swirling flows in the high-frequency limit. A comparison with the widely used expression of the sound power for a uniform flow is also carried out.
机译:使用增加几何和流动复杂性的四个数值示例,系统地研究了当今主要后处理方法的适用范围和准确性,这些方法可从不稳定的气动源数据中提取转子-定子-相互作用问题的音调信息。测试案例涵盖了从空载平板叶栅撞击到旋涡阵风的基准问题,再到代表现代涡扇发动机的风扇级。使用线性化的Navier-Stokes计算流体动力学方法来获得音调后处理的空气动力学解决方案。研究了每种后处理方法的基本假设,突出了每种方法的缺点和优势。特别是,研究了管道几何形状和平均流量的影响。考虑了声学类比积分法和各种分波技术。此外,使用高频极限中不均匀涡流的声功率模态表达式,研究了表征真实风扇阶段平均流量的不均匀和涡流对声功率守恒的影响。还进行了与声功率表达的广泛使用的比较,以获得均匀的流动。

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