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Experimental assessment of a new combined flow control approach in compressor cascade

机译:压缩机级联新组合流动控制方法的实验评估

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摘要

A new combined flow control approach is put forward in this paper using blade slot and vortex generator, which increase the flow control benefits by the combining their effects. A preliminary parameter study is conducted to select the geometry parameters of the vortex generator, and then experiments are performed to assess the gains and to reveal the mechanisms. The measured flow fields show that the cascade separation is significantly reduced and the outlet flow field is more ordered due to the combined approach. The cascade performance, the total pressure loss, the flow turning angle and the static pressure rise averagely increase by 30.9%, +2.0 degrees, and +69.9% respectively. The stable margin of the cascade rises +3 degrees regarding the incidence angle. The mechanisms should be concluded that high-speed slot jet induced reduces trailing edge separations and concentrates remaining separations to the cascade corner, and the vortex generator further decreases the corner separations by deflecting the passage vortex. Combining the benefits of two devices, the combined approach achieves better flow control effects than the individual two.
机译:本文采用叶片槽和涡流发生器提出了一种新的组合流量控制方法,通过组合它们的效果增加了流量控制的益处。进行初步参数研究以选择涡流发生器的几何参数,然后进行实验以评估增益并揭示机制。测量的流场表明,由于组合方法,级联分离显着降低,出口流场更新。级联性能,总压力损失,流量转向角度和静压平均分别增加30.9%,+ 2.0度,+ 69.9%。级联的稳定边缘升高到入射角的+3度。应得出结论,高速槽射流诱导减少后沿分离,并集中到级联角的剩余分离,并且通过偏转通道涡流,涡流发生器进一步降低了角分离。结合两个设备的益处,组合方法比单个两个实现了更好的流量控制效果。

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