首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.A; 20040614-17; Vienna(AT) >UNSTEADY AERODYNAMICS AND INTERACTIONS BETWEEN A HIGH PRESSURE TURBINE VANE AND ROTOR
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UNSTEADY AERODYNAMICS AND INTERACTIONS BETWEEN A HIGH PRESSURE TURBINE VANE AND ROTOR

机译:高压涡轮叶片与转子之间的非定常气动和相互作用

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摘要

A set of experimental data is presented investigating the unsteady aerodynamics associated with a high pressure turbine vane (HPV) and rotor blade (HPB). The data was acquired at the Turbine Research Facility (TRF) of the Air Force Research Laboratory. The TRF is a transient, blowdown facility generating several seconds of experimental data on full scale engine hardware at scaled turbine operating conditions simulating an actual engine environment. The pressure ratio and freestream Reynolds number were varied for this investigation. Surface unsteady pressure measurements on the HPV, total pressure traverse measurements downstream of the vane, and surface unsteady pressure measurements for the rotor blade were obtained. The unsteady content of the HPV surface was generated by the rotor potential field. The first harmonic decayed more rapidly than the second harmonic with a movement upstream causing the second harmonic to be most influential at the vane throat. The blade unsteadiness appears to be caused by a combination of shock, potential field, and vane wake interactions between the vane and rotor blade. The revolution averaged data resulted in higher unsteadiness than a passing ensemble average for both vane and rotor indicating a need to understand each passage for high cycle fatigue (HCF) effects.
机译:提出了一组实验数据,用于研究与高压涡轮叶片(HPV)和转子叶片(HPB)相关的不稳定空气动力学。数据是从空军研究实验室的涡轮研究设施(TRF)获得的。 TRF是一种瞬态排污设施,可在按比例缩放的涡轮运行条件下模拟实际发动机环境,在全尺寸发动机硬件上生成几秒钟的实验数据。对于该研究,改变了压力比和自由流雷诺数。获得了HPV上的表面非稳态压力测量值,叶片下游的总压力遍历测量值以及转子叶片的表面非稳态压力测量值。 HPV表面的不稳定含量是由转子电势场产生的。一阶谐波的衰减比二阶谐波的衰减更快,并且上游运动导致二阶谐波对叶片喉部的影响最大。叶片不稳定可能是由于叶片,转子叶片之间的冲击,势场和叶片尾流相互作用共同引起的。旋转平均数据导致的不稳定性高于叶片和转子的通过合奏平均值,这表明需要了解每个通道的高循环疲劳(HCF)效应。

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