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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Impact of Manufacturing Variability and Nonaxisymmetry on High-Pressure Compressor Stage Performance
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Impact of Manufacturing Variability and Nonaxisymmetry on High-Pressure Compressor Stage Performance

机译:制造变异性和非轴对称性对高压压缩机级性能的影响

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摘要

This paper introduces an approach for considering manufacturing variability leading to a nonaxisymmetric blading in the computational fluid dynamics simulation of a high-pressure compressor stage. A set of 150 rotor blades from a high-pressure compressor stage was 3D scanned in order to obtain the manufacturing variability. The obtained point clouds were parameterized using a parametric blade model, which uses typical profile parameters to translate the geometric variability into a numerical model. Probabilistic simulation methods allow for the generation of a sampled set of blades that statistically corresponds to the measured one. This technique was applied to generate 4000 sampled blades in order to investigate the influence of a nonaxisymmetric blading. It was found that the aerodynamic performance is considerably influenced by a variation of the passage cross section. Nevertheless, this influence decreases with an increasing number of independently sampled blades and, thus, independently shaped passage cross sections. Due to its more accurate consideration of the geometric variability, the presented methodology allows for a more realistic performance analysis of a high-pressure compressor stage.
机译:本文介绍了一种在高压压缩机级的计算流体动力学模拟中考虑制造差异性导致非轴对称叶片的方法。为了获得制造的可变性,对来自高压压缩机级的一组150个转子叶片进行了3D扫描。使用参数化叶片模型对获得的点云进行参数化,该模型使用典型的轮廓参数将几何变异性转换为数值模型。概率模拟方法允许生成一组采样叶片,这些叶片在统计上对应于所测量的一组。为了研究非轴对称叶片的影响,将该技术应用于产生4000个采样叶片。已经发现,空气动力学性能受到通道横截面变化的很大影响。然而,随着独立采样叶片数量的增加,从而影响通道横截面的形状独立,该影响会减小。由于更精确地考虑了几何可变性,因此所提出的方法可以对高压压缩机级进行更现实的性能分析。

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