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Aeroelastic response of metallic and composite propfan models in yawed flow

机译:金属和复合螺旋桨模型在偏航流中的气动弹性响应

摘要

An analytical investigation of aeroelastic response of metallic and composite propfan models in yawed flow was performed. The analytical model is based on the normal modes of a rotating blade and the three dimensional unsteady lifting surface aerodynamic theory including blade mistuning. The calculated blade stresses or strains are compared with published wind tunnel data on two metallic and three composite propfan wind tunnel models. The comparison shows a good agreement between theory and experiment. Additional parametric results indicate that blade response is very sensitive to the blade stiffness and also to blade frequency and mode shape mistuning. From these findings, it is concluded that both frequency and mode shape mistuning should be included in aeroelastic response analysis. Furthermore, both calculated and measured strains show that combined blade frequency and mode shape mistuning has beneficial effects on response due to yawed flow.
机译:对偏航流中的金属和复合螺旋桨模型的气动弹性响应进行了分析研究。该分析模型基于旋转叶片的正常模式和三维非稳态升力表面空气动力学理论,其中包括叶片微动。将计算出的叶片应力或应变与已发布的风洞数据在两个金属和三个复合propfan风洞模型上进行比较。比较表明理论和实验之间有很好的一致性。其他参数结果表明,叶片响应对叶片刚度以及叶片频率和模态失谐非常敏感。从这些发现可以得出结论,在气动弹性响应分析中应同时包括频率和模态失谐。此外,计算出的应变和测量到的应变均表明,叶片频率和振型的组合对叶片的偏航性能有有益的影响。

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