首页> 外文会议>ASME turbo expo >EXPERIMENTAL INVESTIGATION OF FORCED RESPONSE IMPELLER BLADE VIBRATION IN A CENTRIFUGAL COMPRESSOR WITH VARIABLE INLET GUIDE VANES - PART 1: BLADE DAMPING
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EXPERIMENTAL INVESTIGATION OF FORCED RESPONSE IMPELLER BLADE VIBRATION IN A CENTRIFUGAL COMPRESSOR WITH VARIABLE INLET GUIDE VANES - PART 1: BLADE DAMPING

机译:具有可变入口导向叶片的离心式压缩机强制叶轮叶片振动的实验研究 - 第1部分:刀片阻尼

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Forming the first part of a two-part paper, the quantification of the resonant response levels and the damping quantities for a centrifugal compressor impeller with variable inlet guide vanes under engine representative operating conditions is detailed in this work. The motivation for the investigation is the lack of experimental data that are needed to improve and validate computational tools used during the design phase. Measurements were performed during resonant blade vibrations with the inlet pressure, the inlet guide vane angle and the operating point as the varying parameters. The flow non-uniformity introduced into the inlet flow field was measured with an aerodynamic probe. These measurements showed an increase in flow distortion for increased guide vane angles. The response amplitudes were acquired with dynamic strain gauges. A curve-fit method was applied to estimate the critical damping ratios. The results showed a linear correlation of the aerodynamic damping with the inlet pressure. The mode dependent material damping was therefore derived using a linear extrapolation to vacuum conditions of the inlet pressure dependent overall damping. The resonant blade dynamics could be captured with a single degree of freedom model. The aerodynamic damping and the maximum strain response were found to significantly depend on the inlet guide vane angle setting and on the throttle setting of the compressor.
机译:在发动机代表操作条件下,在发动机代表操作条件下,形成双纸张的第一部分,谐振响应水平的定量和用于离心压缩机叶轮的阻尼量,在发动机代表操作条件下详述。调查的动机是缺乏改进和验证设计阶段使用的计算工具所需的实验数据。在具有入口压力的谐振叶片振动期间进行测量,入口导向叶片角度和操作点作为变化参数。用空气动力学探针测量引入入口流场的流动不均匀性。这些测量结果显示了增加导向叶片角度的流动变形的增加。用动态应变仪获取响应幅度。施加曲线拟合方法来估计临界阻尼比率。结果表明,气动阻尼与入口压力的线性相关性。因此,使用线性外推与入口压力的真空条件导出模式依赖性材料阻尼。可以通过单一程度的自由模型捕获谐振刀片动态。发现空气动力学阻尼和最大应变响应显着取决于入口导向叶片角度设定和压缩机的节气门设置。

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