转子叶片几何不确定性的表示与分析

L. Carassale, S. Bruzzone, A. Cavicchi, M. Brunenghi
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引用次数: 3

摘要

转子叶片制造过程中的几何不确定性是设计人员关注的主要问题。生产的部件与其标称几何形状的偏差会对固有频率(NF)产生影响,在某些情况下,可能会对工作条件下的动态强迫响应产生负面影响。几何缺陷通常通过施加基于经验考虑的尺寸公差来限制,简化的方法可能导致昂贵的制造要求,仍然可能无法保证安全的结果。本文提出了旋翼叶片几何不确定性的概率表示,并定义了一种评估其对叶片NFs影响的方法。从名义几何的偏差是通过主成分分析(PCA)表示的,其中它被表示为由相互不相关的随机变量(主成分,PC)调制的特征几何形状(gum)的总和。然后将每个GUM的影响线性传播到叶片NFs上,并最终定义灵敏度矩阵。该程序应用于一个案例研究,该研究涉及一组50个名义上相同的压气机叶片,并测试了牙龈表示几何不确定性影响的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Representation and Analysis of Geometric Uncertainties in Rotor Blades
Geometric uncertainties involved in the rotor blade manufacturing process are a major concern for designers. The deviation of the produced components from their nominal geometry have an impact on the Natural Frequencies (NF) that, under certain circumstances, may have negative effects on the dynamic forced response in operative conditions. Geometric defects are usually limited by imposing dimensional tolerances based on empirical considerations, simplified approach that may lead to costly manufacturing requirements that still may not guarantee safe results. This paper proposes a probabilistic representation of the geometric uncertainties for rotor blades and defines a procedure to evaluate their effects on the blade NFs. The deviation from nominal geometry is represented through the Principal Component Analysis (PCA) where it is expressed as a sum of characteristic geometric shapes (GUMs) modulated by mutually uncorrelated random variables (Principal Components, PC). The effect of each GUM is then linearly propagated on the blade NFs and a sensitivity matrix is finally defined. The procedure is applied to a case-study that concerns a set of 50 nominally identical compressor blades and the ability of GUMs to represent the effects of geometric uncertainties is tested.
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