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首页> 外文期刊>Journal of Sound and Vibration >Nonlinear galloping of internally resonant iced transmission lines considering eccentricity
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Nonlinear galloping of internally resonant iced transmission lines considering eccentricity

机译:考虑偏心率的内部共振冰传输线的非线性舞动

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摘要

Based on the curved-beam theory, a nonlinear galloping model considering three displacement (normal, bi-normal and tangential) components and twist is formulated. According to the property of transmission line, one reduced (normal and bi-normal) galloping model, with regard of bending, rotation and eccentricity of cross section, is obtained. Moreover, the initial rotation angle is also introduced in galloping and aerodynamic models. Additionally, based on the reduced model, the bifurcation and stability of the two cases (1:1 resonance and 2:1 resonance) are analyzed. The results turn out that the importance of ice eccentricity needs to be highlighted. Finally, multiple stabilities are found through the analyses of bifurcation and stability and proved by the reduced model and Reduced Amplitude Modulation Equations (RAME) numerically integrated in time history.
机译:基于弯曲光束理论,建立了考虑三个位移(法向,双法向和切向)分量和扭曲的非线性驰豫模型。根据传输线的特性,获得了一种关于截面的弯曲,旋转和偏心率的减小的(正常和双法向)舞动模型。而且,初始旋转角度也被引入了奔腾和空气动力学模型。此外,基于简化模型,分析了两种情况(1:1共振和2:1共振)的分叉和稳定性。结果表明,需要强调冰偏心率的重要性。最后,通过分叉和稳定性分析发现了多个稳定性,并通过在时间历史中数值积分的简化模型和缩减幅度调制方程(RAME)进行了证明。

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