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PROBABILISTIC MISTUNING ASSESSMENT USING NOMINAL AND GEOMETRY BASED MISTUNING METHODS

机译:基于名义和几何的减灾方法的概率减灾评估

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Two deterministic mistiming models utilizing component mode synthesis methods are used in a Monte Carlo simulation to generate mistuned response distributions for a geometrically perturbed Integrally Bladed Rotor. The first method, a frequency-perturbation approach with a nominal mode approximation used widely in academia and industry, assumes airfoil geometric perturbations alter only the corresponding modal stiffnesses while its mode shapes remain unaffected. The mistuned response is then predicted by a summation of the nominal modes. The second method, a geometric method utilizing non-nominal modes, makes no simplifying assumptions of the dynamic response due to airfoil geometric perturbations, but requires recalculation of each airfoil eigen-problem. A comparison of the statistical moments of the mistuned response distributions and prediction error is given for three different frequency ranges and engine order excitations. Further, the response distributions are used for a variety of design and testing scenarios to highlight impacts of the frequency-based approach inaccuracy. Results indicate the frequency-based method typically provides conservative response levels.
机译:在蒙特卡洛模拟中使用了两个利用分量模式综合方法的确定性雾化模型,以为几何扰动的整体叶片式转子生成雾化的响应分布。第一种方法是在学术界和工业界广泛使用的具有名义模态近似的频率扰动法,它假定翼型几何扰动仅改变相应的模态刚度,而其模态形状不受影响。然后,通过标称模式的总和来预测被误解的响应。第二种方法是利用非标称模式的几何方法,它没有简化因机翼几何扰动而引起的动态响应假设,但需要重新计算每个机翼本征问题。针对三种不同的频率范围和发动机阶次激励,给出了失谐响应分布和预测误差的统计矩的比较。此外,响应分布用于各种设计和测试方案,以突出基于频率的方法不准确的影响。结果表明,基于频率的方法通常可提供保守的响应水平。

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