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首页> 外文期刊>International journal of structural stability and dynamics >DYNAMICS OF SHALLOW CABLES UNDER TURBULENT WIND: A NONLINEAR FINITE ELEMENT APPROACH
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DYNAMICS OF SHALLOW CABLES UNDER TURBULENT WIND: A NONLINEAR FINITE ELEMENT APPROACH

机译:湍流下扁电缆的动力特性:一种非线性有限元方法

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摘要

In classic cable theory, vibrations are usually analyzed by writing the equations of motion in the neighborhood of the initial equilibrium configuration. Furthermore, a fundamental difference exists between out-of-plane motions, which basically corresponds to the linear behavior of a taut string and in-plane motion, where self-weight determines a sagged initial profile. This work makes use of a continuous approach to establish the initial shape of the cable when it is subjected to wind or fluid flow arbitrarily directed and employed a novel nonlinear finite element technique in order to investigate the dynamics present around the initial equilibrium shape of the cable. Stochastic solutions in the frequency domain are derived for a wind-exposed cable after linearization of the problem. By applying the proper orthogonal decomposition (POD) technique with the aim of reducing computational effort, an approach to simulate modal wind forces is proposed and applied to the nonlinear equations of motion.
机译:在经典电缆理论中,通常通过在初始平衡构型附近写入运动方程来分析振动。此外,平面外运动之间存在根本差异,该差异基本上对应于拉紧弦的线性行为和平面内运动,其中自重确定下垂的初始轮廓。这项工作利用连续方法来建立电缆在受到任意风或流体流动时的初始形状,并采用一种新颖的非线性有限元技术来研究电缆初始平衡形状周围的动力学。 。在使问题线性化之后,对于暴露于风的电缆,可以得出频域中的随机解。通过应用适当的正交分解(POD)技术以减少计算工作量,提出了一种模拟模态风力的方法,并将其应用于非线性运动方程。

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