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Static and dynamic response of elastic suspended cables with damage

机译:弹性悬挂电缆损坏时的静态和动态响应

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摘要

In cable-stayed structures cables are subjected to potential damage, mainly due to fatigue and galvanic corrosion. The paper presents an analysis of damage effects on the statics and dynamics of suspended cables. An elastic continuous mono-dimensional model for damaged cables, including geometric nonlinearities, is formulated for the purpose. The damage is described as a diffused reduction of the cable axial stiffness, and defined through its intensity, extent and position. Exact solutions of the equations governing the cable static equilibrium under self-weight are achieved, and the significance of the tension loss and sag augmentation resulting from damage are investigated under variation of practically significant parameters. The system spectral properties characterizing the free undamped dynamics are obtained in a closed-form fashion for shallow cables within the low frequency range. The sensitivity of the frequencies to the intensity and extent of damage is discussed, outlining two damage effects, which alternatively stiffen or soften the cable modes, whose respective static and geometric origin is recognized. Finally, the symmetry-breaking induced by damage on the static profile is verified to destroy the crossing phenomenon (crossover) characterizing the frequency loci of undamaged cables, which degenerates into a narrow frequency veering phenomenon. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在斜拉结构中,电缆可能会遭受潜在损坏,主要是由于疲劳和电腐蚀。本文提出了对悬挂电缆的静力学和动力损伤的分析。为此,提出了一种用于损坏电缆的弹性连续一维模型,包括几何非线性。损坏被描述为电缆轴向刚度的分散降低,并通过其强度,程度和位置来定义。获得了控制自重下电缆静平衡的方程式的精确解,并研究了在实际有效参数变化的情况下由于损伤而引起的拉力损失和下垂增大的重要性。对于低频范围内的浅电缆,以封闭形式获得表征自由无阻尼动力学特性的系统频谱特性。讨论了频率对损伤强度和程度的敏感性,概述了两种损伤效应,它们交替地使电缆模式变硬或变软,从而识别出电缆的静态和几何原点。最后,验证了由破坏静态轮廓引起的对称性破坏,以破坏表征未损坏电缆的频率轨迹的交叉现象(crossover),该现象退化为狭窄的频率转向现象。 (c)2007 Elsevier Ltd.保留所有权利。

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