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Control of secondary flow structures on a highly loaded compressor cascade

机译:控制高负荷压缩机叶栅上的二次流结构

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This paper presents detailed flow-field measurements for a compressor cascade equipped with synthetic jet actuators for active flow control. The synthetic jets are mounted on the cascade sidewall and the suction side surface of the blade to reduce the total pressure loss caused by strong secondary flow structures developing in the passage. There are certain articles reporting that synthetic jets are well suited for flow control applications even in axial compressors and cascades. Most of them are focused on the parameter variation to optimize the efficiency of the control approach, still very little is known on the interaction of the synthetic jet actuators with the flow field. Detailed x-wire and pressure measurements were conducted to understand how synthetic jets influence the flow field and what causes the significant loss reduction in the cascade wake. It seems that the added momentum is not the key parameter for flow control with synthetic jets. In fact, the high mixing and the unsteadiness of the jets seem to amplify existing velocity fluctuations in the flow field. These increased fluctuations result in a shift of the shear layer between the flow separation and the surrounding flow, and thus in a dethrottling of the compressor cascade. Together with the increased mixing, loss reductions of approximately 10% can be reached using synthetic jet actuators.
机译:本文介绍了配有合成射流执行器以进行主动流量控制的压缩机叶栅的详细流场测量。合成射流安装在叶片的叶栅侧壁和吸力侧表面上,以减少由通道中形成的强次流结构引起的总压力损失。某些文章报道说,合成射流非常适合流量控制应用,即使在轴向压缩机和叶栅中也是如此。它们中的大多数都集中在参数变化上,以优化控制方法的效率,但对于合成射流致动器与流场的相互作用知之甚少。进行了详细的X线和压力测量,以了解合成射流如何影响流场以及是什么导致级联尾流中损失的显着减少。看起来,增加的动量不是合成射流控制流量的关键参数。实际上,射流的高度混合和不稳定会放大流场中现有的速度波动。这些增加的波动导致剪切层在流动分离和周围流动之间移动,从而导致压缩机级联的节流。加上增加的混合,使用合成射流执行器可减少约10%的损耗。

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