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Characterizing optimal mistuning by symmetry arguments: a general framework applied to a dynamic flutter model

机译:通过对称参数表征最佳雾化:应用于动态颤振模型的通用框架

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Mistuning is considered as a viable passive control scheme for flutter instabilities in turbomachines. We present a model-independent framework, primarily based on symmetry arguments, for analyzing and optimizing stability increases due to mistuning. Analysis reduces to a block circular eigenvalue/vector problem which can be solved efficiently for large systems, and the synthesis or optimization problem is cast as a standard linear constraint, quadratic programming exercise. The methods are then applied to a dynamic flutter model.
机译:对于涡轮机中的颤振不稳定性,误调被认为是可行的被动控制方案。我们提出了一个独立于模型的框架,主要基于对称性参数,用于分析和优化由于不平衡而导致的稳定性增加。分析将结果简化为一个块圆形特征值/向量问题,可以在大型系统中有效地解决该问题,并将综合或优化问题视为标准的线性约束,二次规划练习。然后将这些方法应用于动态颤振模型。

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