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Experimental Investigations of Clocking in a One-and-a-Half- Stage Transonic Turbine Using Laser Doppler Velocimetry and a Fast Response Aerodynamic Pressure Probe

机译:用激光多普勒测速仪和快速响应气动压力探头在一个半级跨音速涡轮机中进行计时的实验研究

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摘要

The current paper presents experimental clocking investigations of the flow field in mid-span in a high-pressure transonic turbine with a downstream vane row (1.5 stage machine). Laser-Doppler-velocimetry measurements were carried out in order to record rotor phase resolved velocity, flow angle, and turbulence distributions upstream and downstream of the second vane row at several different vane-vane positions. Additionally, a fast-response aerodynamic pressure probe was used to get the total pressure distribution downstream of the second vane row for the same positions. Altogether, the measurements were performed for ten different first vane to second vane positions (clocking positions) for measurements downstream of the second vane row and two different clocking positions for measurements upstream of the second vane row. The paper shows that different clocking positions have a significant influence on the flow field downstream of the second vane row. Furthermore, different measurement lines upstream of the second vane row indicate that clocking has nearly no influence on the flow field close to the rotor exit.
机译:本文介绍了带有跨导叶片排(1.5级机)的高压跨音速涡轮中跨度流场的实验计时研究。进行激光多普勒测速仪测量是为了记录转子相分辨的速度,流动角和湍流分布,该速度在多个不同的叶片位置处在第二叶片行的上游和下游。此外,使用快速响应的气动压力探头来获得相同位置第二叶片行下游的总压力分布。总共对第二叶片行下游的十个不同的第一叶片至第二叶片位置(计时位置)进行了测量,并且针对第二叶片行上游的两个不同的计时位置进行了测量。本文表明,不同的计时位置对第二叶片行下游的流场有重大影响。此外,第二叶片行上游的不同测量线表明,计时对转子出口附近的流场几乎没有影响。

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