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首页> 外文期刊>International journal of lifecycle performance engineering >Identification of weak non-linearities in cables of cable-stayed footbridges
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Identification of weak non-linearities in cables of cable-stayed footbridges

机译:斜拉式人行天桥的电缆弱非线性识别

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A time-frequency identification technique for the non-linear identification of a cable element was proposed in this paper. A polynomial form of non-parametric method was used. A long cable of a newly constructed cable-stayed footbridge was modelled in the ANSYS structural software. The model was reduced to a SDoF system, by applying a harmonic force in the first modal frequency and the first mode shape. A good match between the identified and numerical data was obtained. Some interesting non-linear phenomena were observed: only a cubic type of non-linearity was identified. Moreover, the values of the damping and cubic parameters stabilised at higher load amplitudes. However, parameter relevant to linear-frequency was increasing with the loading amplitude showing a typical hardening behaviour of cable structures. Superharmonics were present in the response at higher loading amplitudes. Therefore, the identification procedure was found to be effective at higher load amplitudes.
机译:提出了一种时频识别技术,用于电缆元件的非线性识别。使用非参数方法的多项式形式。在ANSYS结构软件中对新建斜拉式人行天桥的长电缆进行了建模。通过在第一模态频率和第一模态形状中施加谐波力,将模型简化为sf系统。在识别的数据和数值数据之间获得了很好的匹配。观察到一些有趣的非线性现象:仅确定了三次非线性类型。此外,阻尼和三次方参数的值在较高的负载振幅下稳定。然而,与线性频率有关的参数随着载荷振幅的增加而增加,显示出电缆结构的典型硬化行为。超谐波在响应中以较高的加载振幅出现。因此,发现识别程序在较高的负载振幅下是有效的。

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