首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.B; 20040614-17; Vienna(AT) >EFFECT OF CLOCKING ON THE SECOND STATOR PRESSURE FIELD OF A ONE AND A HALF STAGE TRANSONIC TURBINE
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EFFECT OF CLOCKING ON THE SECOND STATOR PRESSURE FIELD OF A ONE AND A HALF STAGE TRANSONIC TURBINE

机译:时钟对一个半跨跨涡轮的第二定子压力场的影响

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This paper focuses on the experimental investigation of the time-averaged and time-resolved pressure field of a second stator tested in a one and a half stage high-pressure transonic turbine. The effect of clocking and its influence on the aerodynamic and mechanical behaviour are investigated. The test program includes four different clocking positions, i.e. relative pitch-wise positions between the first and the second stator. Pneumatic probes located upstream and downstream of the second stator provide the time-averaged component of the pressure field. For the second stator airfoil, both time-averaged and time-resolved surface static pressure fields are measured at 15, 50 and 85% span with fast response pressure transducers. Regarding the time-averaged results, the effect of clocking is mostly observed in the leading edge region of the second stator, the largest effects being observed at 15% span. The surface static pressure distribution is changed locally, which is likely to affect the overall performance of the airfoil. The phase-locked averaging technique allows to process the time-resolved component of the data. The pressure fluctuations are attributed to the passage of pressure gradients linked to the traversing of the upstream rotor. The pattern of these fluctuations changes noticeably as a function of clocking. Finally, the tune-resolved pressure distribution is integrated along the second stator surface to determine the unsteady forces applied on the vane. The magnitude of the unsteady force is very dependent on the clocking position.
机译:本文重点研究在半高压跨音速透平中测试的第二个定子的时间平均和时间分辨压力场。研究了时钟的影响及其对空气动力学和机械性能的影响。测试程序包括四个不同的时钟位置,即第一和第二定子之间的相对螺距方向位置。位于第二定子上游和下游的气动探头提供了压力场的时间平均分量。对于第二个定子机翼,使用快速响应压力传感器在15、50和85%的跨度下测量时间平均和时间分辨的表面静压力场。关于时间平均结果,时钟效应主要在第二个定子的前缘区域中观察到,在15%跨度时观察到最大的影响。表面静压分布会局部改变,这很可能会影响机翼的整体性能。锁相平均技术可以处理数据的时间分辨分量。压力波动归因于与上游转子的运动有关的压力梯度的通过。这些波动的模式随着时钟的变化而显着变化。最终,将沿第二定子表面积分的旋律分解压力分布确定施加在叶片上的不稳定力。非稳定力的大小非常取决于计时位置。

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