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Reduced Order Model of a Multistage Bladed Rotor with Geometric Mistiming via Modal Analyses of Finite Element Sectors

机译:通过模态分析的有限元分析,多级叶片转子的减少阶模型,具有几何误报

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An algorithm to generate a reduced order model of a multi-stage rotor in which each stage has a different number of blades has been developed. It is shown that a reduced order model can be developed on the basis of tuned modes of certain bladed disks which can be easily obtained via sector analyses. Further, it is shown that reduced order model can also be obtained when blades are geometrically mistuned. This algorithm is similar to the modified modal domain analysis, which has been recently developed for a single-stage bladed rotor with geometric mistuning. The validity of this algorithm is shown for the finite element model of a two-stage bladed rotor. In addition, the statistical distributions of peak maximum amplitudes and natural frequencies of a two-stage rotor are generated via Monte Carlo simulations for different patterns of geometric mistuning.
机译:一种算法,用于产生多级转子的减小阶模型,其中每个级具有不同数量的刀片。结果表明,可以基于通过扇区分析容易地获得的某些叶片盘的调谐模式来开发减少的订单模型。此外,示出了当叶片在几何上雾化时也可以获得减小的订单模型。该算法类似于改进的模型模域分析,最近已为具有几何迷雾的单级叶片转子开发。为两级叶片转子的有限元模型示出了该算法的有效性。此外,通过Monte Carlo模拟产生峰值最大幅度和两级转子的自然频率的统计分布,用于不同的几何迷雾模式。

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