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首页> 外文期刊>Journal of turbomachinery >Active Control of Tip Clearance Flow in Axial Compressors
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Active Control of Tip Clearance Flow in Axial Compressors

机译:主动控制轴向压气机叶尖间隙

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摘要

Control of compressor tip clearance flows is explored in a linear cascade using three types of fluidic actuators; normal synthetic jet (NSJ; unsteady jet normal to the mean flow with zero net mass flux), directed synthetic jet (DSJ; injection roughly aligned with the mean flow), and steady directed jet (SDJ), mounted on the casing wall. The effectiveness of each active control technique is determined in terms of its ability to achieve: (1) reduction of tip leakage flow rate, (2) mixing enhancement between tip leakage and core flow, and (3) increase in streamwise momentum of the flow in the endwall region. The measurements show that the NSJ provides mixing enhancement only, or both mixing enhancement and leakage flow reduction, depending on its pitchwise location. The DSJ and SDJ actuators provide streamwise momentum enhancement with a consequent reduction of clearance-related blockage. The blockage reduction associated with the use of NSJ is sensitive to actuator frequency, whereas that with the use of DSJ is not. For a given actuation amplitude, DSJ and SDJ are about twice as effective as NSJ in reducing clearance-related blockage. Further the DSJ and SDJ can eliminate clearance-related blockage with a time-averaged momentum flux roughly 16% of the momentum flux of the leakage flow. However, achieving an overall gain in efficiency appears to be hard; the decrease in loss is only about 30% of the expended flow power from the present SDJ actuator. Guidelines for improving the efficiency of the directed jet actuation are presented.
机译:使用三种类型的流体执行器以线性级联方式探索对压缩机叶尖间隙流量的控制。常规合成射流(NSJ;垂直净流量为零的垂直于平均流量的非稳定射流),定向合成射流(DSJ;与平均流量大致对准的进样)和固定定向射流(SDJ),安装在套管壁上。每种主动控制技术的有效性取决于其实现的能力:(1)降低尖端泄漏流速,(2)尖端泄漏与岩心流动之间的混合增强,以及(3)流动的水流动量增加在端壁区域。测量结果表明,NSJ仅提供混合增强功能,或者同时提供混合增强功能和泄漏流减少功能,具体取决于其间距位置。 DSJ和SDJ执行器可增强流向动量,从而减少与间隙有关的阻塞。与使用NSJ相关的阻塞减少对执行器频率很敏感,而与使用DSJ无关。对于给定的驱动幅度,DSJ和SDJ在减少与间隙相关的阻塞方面的效率是NSJ的两倍。此外,DSJ和SDJ可以消除与间隙相关的阻塞,其时间平均动量通量约为泄漏流动量通量的16%。但是,要获得整体效率上的提高似乎很困难。损耗的减少仅为当前SDJ执行器消耗的流量的30%左右。提出了改善定向射流驱动效率的指南。

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