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INVESTIGATION OF UNSTEADY AERODYNAMIC BLADE EXCITATION MECHANISMS IN A TRANSONIC TURBINE STAGE - PART II: ANALYTICAL DESCRIPTION AND QUANTIFICATION

机译:经型跨型汽轮机阶段不稳定空气动力叶片励磁机制的研究 - 第二部分:分析描述和量化

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This paper presents a study of the blade pressure perturbation levels and the resulting blade forces in a high-pressure transonic turbine stage based on 3D time dependent viscous computations. Globally, the blade pressure unsteadiness is quantified with the RMS of the pressure perturbations integrated in both time and along the blade surface. Operation point as well as spanwise variations are addressed. Locally, the relative strength of the pressure perturbation events on the vane and rotor blade surface is investigated. To obtain information about the relative strength of events related to the blade passing frequency and higher harmonics, the pressure field is Fourier decomposed in time at different radial positions along the blade arc-length. The amplitude peaks are then related to the pressure events in space-time maps. With the help of the observations and results from the blade pressure study, the radial variations of the unsteady blade force and torque acting on a constant span blade profile section are investigated. The connection between the first and second vane passing frequency pressure amplitudes on the rotor blade surface and the resulting force and the torque amplitudes for three selected blade modes was investigated in detail. In this investigation the pressure was integrated over defined rotor blade regions to quantify local force contributions. Spanwise as well as operation point variations are addressed.
机译:本文介绍了基于3D时间相关粘性计算的高压跨音速涡轮级中的叶片压力扰动水平和所得叶片力。在全球范围内,用沿着叶片表面的压力扰动的RMS量化叶片压力不稳定。操作点以及始终变化。本地,研究了叶片和转子叶片表面上的压力扰动事件的相对强度。为了获得有关与叶片通过频率和更高谐波相关的事件的相对强度的信息,压力场在沿着叶片弧长的不同径向位置处及时分解。然后,幅度峰与时空地图中的压力事件有关。借助于观察结果和叶片压力研究的结果,研究了非稳定叶片力和作用在恒定跨度叶片轮廓部分上的扭矩的径向变化。转子叶片表面上的第一和第二叶片通过频率的压力振幅和产生的力和三个选定叶片模式转矩振幅之间的连接进行详细进行了研究。在该研究中,压力在定义的转子叶片区域上集成,以量化局部力贡献。始跨和操作点变化都是解决的。

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