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THREE-DIMENSIONAL UNSTEADY FLOW FIELD DUE TO ROTOR-STATOR INTERACTION IN THE TIP REGION OF AN AXIAL COMPRESSOR STATOR PASSAGE

机译:由轴压缩机定子通道的尖端区域中的转子定子相互作用引起的三维非定常流场

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This paper reports an experimental study of the three-dimensional unsteady flow field due to rotor-stator interaction in the tip region of an axial compressor stator passage. The measurements were conducted on a low-speed large-scale axial compressor using a 3-component Laser Doppler Velocimetry. Both experimental method and measurement techniques are presented in details. The measurement results indicate that the rotor tip leakage vortex and the rotor wake periodically pass through the tip region of a stator passage, resulting in periodical flow blockages and fluctuations in the stator passage. In the meantime, the wake is catching up with the last rotor leakage vortex. The interaction and the flow mixing between the vortex and the wake occur in a stator passage, leading to more substantial fluctuations in the flow field. The rotor tip leakage vortex has a stronger influence on the downstream endwall flow than the rotor wake. The low-energy fluids from the upstream tend to accumulate toward the pressure surface of a stator blade. The separation flow near the suction surface is found in the rear of a stator passage. The interaction and the flow mixing are observed among the low-energy fluids from the upstream and the separation flow.
机译:本文报道了三维非定常流场由于轴向压缩机定子通道的尖端区域中的转子定子相互作用而对三维非稳态流场的实验研究。使用3分量激光多普勒速度测量在低速大型轴向压缩机上进行测量。在细节中提出了实验方法和测量技术。测量结果表明转子尖端泄漏涡流和转子唤醒周期性地穿过定子通道的尖端区域,导致定子通道中的周期性流量堵塞和波动。与此同时,唤醒正在追赶最后一个转子泄漏涡旋。涡流与唤醒之间的相互作用和流动混合在定子通道中发生,导致流场中更大的波动。转子尖端泄漏涡流具有比转子唤醒的下游端壁流量更强。来自上游的低能量流体倾向于积聚朝向定子叶片的压力表面。吸入表面附近的分离流量在定子通道的后部找到。在来自上游和分离流动的低能量流体中观察到相互作用和流动混合。

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