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PREDICTION OF SHROUDED TURBOMACHINERY BLADE FORCED RESPONSE BY A COMPLEX MODE ANALYSIS

机译:复杂模式分析预测涡轮机叶片受迫响应

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摘要

Turbomachinery shrouded rotor blade design has been widely used in fans, compressors, and turbines. By using either tip or mid-span shroud, the blade structural damping and natural frequencies can be increased to reduce flutter or forced response problems. However, shrouded rotor blade design sometimes results in complex system modes with both bending and torsion present at the same time. Since shrouded rotors are rotationally periodic, the bending and torsion combined system mode can be decomposed into a real component and an imaginary component. Using both the real and imaginary mode shapes, coupled with the blade surface flow-field, a complex mode analysis was developed using a modal solution to determine the forced response of the system. This complex mode analysis was applied to both tip and mid-span shrouded rotor blade applications. Bending-dominated or torsion-dominated simple blade modes in general can be analyzed using an existing single mode approach. However, for the bending and torsion combined system modes, the single mode analysis can be misleading. By using the complex mode analysis, it was demonstrated that the combined bending and torsion system mode plays an important role in determining the blade forced response.
机译:涡轮机械笼罩式转子叶片设计已广泛用于风扇,压缩机和涡轮机。通过使用顶部或中跨围带,可以增加叶片的结构阻尼和固有频率,以减少颤动或强制响应问题。但是,带罩的转子叶片设计有时会导致复杂的系统模式,同时出现弯曲和扭转。由于带罩转子是周期性旋转的,因此弯曲和扭转组合的系统模式可以分解为实部和虚部。使用实模式和虚模式形状,再加上叶片表面流场,使用模态解决方案开发了复杂模式分析,以确定系统的强制响应。这种复杂模式分析适用于叶尖和中跨带罩转子叶片应用。通常,可以使用现有的单模方法分析弯曲为主或扭转为主的简单叶片模式。但是,对于弯曲和扭转组合的系统模式,单模式分析可能会产生误导。通过使用复杂模式分析,证明了弯曲和扭转系统的组合模式在确定叶片受力响应中起着重要作用。

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