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Non-linear Galloping of Sagged Cables in 1:2 Internal Resonance

机译:陷波电缆在1:2内部共振中的非线性舞动

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摘要

The aeroelastic behaviour of a flexible elastic suspended cable driven by mean wind speed, blowing perpendicularly to the cable's plane, is investigated. By applying the Galerkin procedure to the partial differential equations of motion and using an in-plane and an out-of-plane mode as shape functions, a two-d.o.f. model is derived. The discrete equations are coupled through quadratic and cubic terms arising both from geometric and aerodynamic effects. The associated linear frequencies are assumed to be in an almost 1:2 ratio, so that internal resonance occurs. The multiple scale perturbation method is employed to obtain a set of three amplitude modulation equations, whose coefficients depend on the mean wind speed, which is assumed as control parameter. Two perturbative solutions are developed, each based on a different assumption about the order of magnitude of the static displacements, produced by steady state wind forces. Analytical results are then compared with direct numerical integrations of discrete non-linear equations. By performing a bifurcation analysis, the existence of several equilibrium branches is proved. The relative importance of geometric and aerodynamic non-linearities is discussed through simplified models. The influence on critical and postcritical behaviour of several parameters, including geometrical cable parameters, detuning and non-symmetric flow effects, is investigated. The important role played by the steady state forces is highlighted.
机译:研究了由垂直于电缆平面吹动的平均风速驱动的柔性弹性悬挂电缆的气动弹性行为。通过将Galerkin程序应用于运动的偏微分方程,并使用平面内和平面外模式作为形状函数,可得到2d.o.f。模型是派生的。离散方程通过几何和空气动力学效应产生的二次项和三次项耦合。假定相关的线性频率几乎为1:2的比率,因此会发生内部共振。多尺度摄动法被用来获得一组三个振幅调制方程,其系数取决于平均风速,该平均风速被假定为控制参数。开发了两个摄动解,每个解基于对稳态风力产生的静态位移的数量级的不同假设。然后将分析结果与离散非线性方程的直接数值积分进行比较。通过分叉分析,证明了几个平衡分支的存在。通过简化模型讨论了几何和空气动力学非线性的相对重要性。研究了几个参数对临界和临界后行为的影响,包括几何电缆参数,失谐和非对称流动效应。强调了稳态力量所起的重要作用。

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  • 作者

    LUONGO A.; G. PICCARDO;

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  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 eng
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