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Aeroelastic Analysis of Rotors With Flexible Disks and Alternate Blade Mistiming

机译:带有软盘和交替叶片误导的转子的气动弹性分析

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摘要

A new reduced-order aeroelastic model using the principal shapes (AMPSs) of modes is presented. Rotors with flexible disks and alternate blade mistuning can challenge the fidelity of flutter prediction techniques that assume uniform blade-to-blade geometry and mode shape invariance with nodal diameter pattern. The AMPS method, however, accounts for alternating blade geometry as well as varying blade mode shapes, providing accurate flutter predictions for a large number of modes from a small number of computational fluid dynamics simulations. AMPS calculations on rotors with alternate blade mistuning are presented and compared to other prediction techniques. The results provide insight into how alternate blade mistuning affects aerodynamic coupling and the flutter characteristics of a rotor.
机译:提出了一种新的使用模式主形(AMPS)的降阶气动弹性模型。带有挠性盘和交替的叶片不平衡的转子可能会挑战颤振预测技术的保真度,该技术假设叶片到叶片的几何形状均匀且模式形状不随节点直径模式变化。但是,AMPS方法考虑了叶片几何形状的交替变化以及叶片模式形状的变化,从而通过少量的计算流体动力学模拟为大量的模式提供了准确的颤动预测。提出了具有交替叶片错动的转子的AMPS计算,并将其与其他预测技术进行了比较。结果为深入了解交替的叶片失谐如何影响空气动力耦合和转子的颤振特性提供了信息。

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  • 来源
    《Journal of turbomachinery》 |2009年第1期|109-117|共9页
  • 作者单位

    Pratt & Whitney, 400 Main Street, East Hartford, CT 06108;

    Pratt & Whitney, 400 Main Street, East Hartford, CT 06108;

    Pratt & Whitney, 400 Main Street, East Hartford, CT 06108;

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  • 正文语种 eng
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