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Measurement of Flow Pattern Within a Rotating Stall Cell in an Axial Compressor

机译:轴流压气机内旋转失速室中流型的测量

摘要

Effective active control of rotating stall in axial compressors requires detailed understanding of flow instabilities associated with this compressor regime. Newly designed miniature high frequency response total and static pressure probes as well as commercial thermoanemometric probes are suitable tools for this task. However, during the rotating stall cycle the probes are subjected to flow direction changes that are far larger than the range of probe incidence acceptance, and therefore probe data without a proper correction would misrepresent unsteady variations of flow parameters. A methodology, based on ensemble averaging, is proposed to circumvent this problem. In this approach the ensemble averaged signals acquired for various probe setting angles are segmented, and only the sections for probe setting angles close to the actual flow angle are used for signal recombination. The methodology was verified by excellent agreement between velocity distributions obtained from pressure probe data, and data measured with thermoanemometric probes. Vector plots of unsteady flow behavior during the rotating stall regime indicate reversed flow within the rotating stall cell that spreads over to adjacent rotor blade channels. Results of this study confirmed that the NASA Low Speed Axial Compressor (LSAC) while in a rotating stall regime at rotor design speed exhibits one stall cell that rotates at a speed equal to 50.6 percent of the rotor shaft speed.
机译:有效地主动控制轴向压缩机中的旋转失速需要详细了解与此压缩机状态相关的流量不稳定性。新设计的微型高频响应总和静压探头以及商用热电流测量探头是完成此任务的合适工具。但是,在旋转失速周期中,探头的流向变化远大于接受探头入射的范围,因此,如果不进行适当的校正,探头数据将无法正确表示流量参数的不稳定变化。提出了一种基于集合平均的方法来解决这个问题。在这种方法中,将针对各种探头设置角度获取的总体平均信号进行分段,并且仅将探头设置角度接近实际流量角度的部分用于信号重组。通过从压力探头数据获得的速度分布与用热电流探针测量的数据之间的极佳一致性,验证了该方法。旋转失速状态期间非定常流动行为的矢量图表明,旋转失速单元内的反向流动扩展到相邻的转子叶片通道。这项研究的结果证实,在处于转子设计转速的旋转失速状态时,NASA低速轴向压缩机(LSAC)表现出一个失速单元,其旋转速度等于转子轴速度的50.6%。

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