首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.6 pt.A; 20050606-09; Reno-Tahoe,NV(US) >INFLUENCE OF AERODYNAMIC LOADING ON ROTOR-STATOR AERODYNAMIC INTERACTION IN A TWO-STAGE LOW PRESSURE RESEARCH TURBINE
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INFLUENCE OF AERODYNAMIC LOADING ON ROTOR-STATOR AERODYNAMIC INTERACTION IN A TWO-STAGE LOW PRESSURE RESEARCH TURBINE

机译:气动载荷对两级低压研究型透平中转子-定子气动相互作用的影响

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The unsteady flow within a two-stage low-pressure research turbine equipped with high lift profiles has been investigated in detail for three different aerodynamic loading conditions. Experiments have been carried out at low speed. Velocity and turbulence intensity in the blade-to-blade plane at midspan have been measured by means of a crossed hot-wire probe, upstream and downstream of each blade row. The probe has been traversed circumferentially over 1.5 bladings pitch and the phase-locked data acquisition and ensemble average technique have been used to reconstruct the flow in space and time. The effects of multistage configuration have been identified and analyzed by considering the velocity components and turbulence intensity. Potential interaction from the downstream blading in relative motion, periodic wake perturbations from the upstream blading and preceding stage perturbations make the flow in the second stage extremely complex. Overall the flow downstream of rotors is perturbed in space by upstream and downstream stators, while flow downstream of stators is mostly perturbed in time by rotor effects. As expected, high lift profiles are significantly sensitive to incidence variation, with this effect further enhanced by the multistage cumulative interactions.
机译:对于三种不同的空气动力学载荷条件,已经对配备高升程曲线的两级低压研究型涡轮机内的非稳态流动进行了详细研究。实验已经以低速进行。在中跨的叶片到叶片平面中的速度和湍流强度已通过交叉热线探针在每排叶片的上游和下游进行了测量。探头已在1.5叶片的螺距上沿周向移动,并且已使用锁相数据采集和集成平均技术重建时空流动。通过考虑速度分量和湍流强度,已经确定并分析了多级结构的影响。下游叶片在相对运动中的潜在相互作用,上游叶片的周期性尾流扰动和前级扰动使第二级的流动极为复杂。总体上,上游和下游的定子会在空间上干扰转子下游的流动,而定子的下游大部分会在时间上受到转子效应的干扰。不出所料,高升程曲线对入射变化非常敏感,并且通过多阶段累积相互作用进一步增强了这种效果。

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