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Separation control on high lift low-pressure turbine airfoils using pulsed vortex generator jets

机译:利用脉冲涡发生器射流控制高升程低压涡轮机翼的分离

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Boundary layer separation control has been studied using vortex generator jets (VGJs) on a very high lift, low-pressure turbine airfoil. Experiments were done under low (0.6%) freestream turbulence conditions on a linear cascade in a low speed wind tunnel. Pressure surveys on the airfoil surface and downstream total pressure loss surveys were documented. Instantaneous velocity profile measurements were acquired in the suction surface boundary layer. Cases were considered at Reynolds numbers (based on the suction surface length and the nominal exit velocity from the cascade) of 25000 and 50000. Jet pulsing frequency and duty cycle were varied. In cases without flow control, the boundary layer separated and did not reattach. With the VGJs, separation control was achieved. At sufficiently high pulsing frequencies, separation control was possible with low jet velocities and 10% duty cycle. At lower frequencies, a 50% duty cycle helped by separating the disturbances associated with the jets turning on and turning off, thereby doubling the frequency of separation control events above the pulsing frequency. Phase averaged velocity profiles and wavelet spectra of the velocity show the VGJ disturbance causes the boundary layer to reattach, but that it can re-separate between disturbances. When the disturbances occur at high enough frequency, the time available for separation is reduced, and the separation bubble remains closed at all times.
机译:已经在非常高扬程,低压涡轮机翼型上使用涡流发生器射流(VGJ)研究了边界层分离控制。在低速风洞中的线性叶栅上,在低(0.6%)自由流湍流条件下进行了实验。记录了翼型表面压力调查和下游总压力损失调查。在吸力表面边界层中获取了瞬时速度分布测量值。考虑雷诺数(基于吸力表面长度和叶栅的标称出口速度)为25000和50000的情况。喷射脉冲频率和占空比不同。在没有流量控制的情况下,边界层会分离并且不会重新附着。使用VGJ,可以实现分离控制。在足够高的脉冲频率下,可以以较低的射流速度和10%的占空比进行分离控制。在较低的频率下,50%的占空比有助于分离与打开和关闭喷嘴相关的干扰,从而使分离控制事件的频率加倍,高于脉冲频率。相位平均速度分布图和速度的小波谱表明,VGJ干扰导致边界层重新附着,但可以在干扰之间重新分离。当干扰发生在足够高的频率时,可用于分离的时间会减少,并且分离气泡始终保持关闭状态。

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