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A continuous vibration analysis model for cables with sag and bending stiffness

机译:垂度和弯曲刚度的连续振动分析模型

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The paper reports an investigation on a continuous model for dynamics of large-diameter sagged cables, taking bending stiffness and sag extensibility into account. Following the classical guidelines of cable dynamics, and by making some simplifications, a continuous model is found in this work; frequency and mode shape equations have been obtained in non-dimensional form. Comparison with Finite Element (FE) and Finite Difference (FD) models has been made to validate the proposed method. Moreover, it allows us to represent local effects at the end zones of cable correctly, if clamped boundary conditions are assumed. To obtain comparable results, the FE model would require a large subdivision, with consequently, a large number of elements. The proposed eigenfunctions allow us to solve the dynamic problem without a large computational effort compared to FE or FD approaches. Finally, in order to show the usefulness of the developed continuous model, an application on the main cables of the designed Messina Strait Bridge has been made.
机译:本文报告了对大直径下垂电缆动力学连续模型的研究,其中考虑了弯曲刚度和下垂扩展性。遵循经典的电缆动力学指导原则,并通过进行一些简化,可以在此工作中找到一个连续模型。频率和模式形状方程已以无量纲形式获得。与有限元(FE)和有限差分(FD)模型进行了比较,以验证所提出的方法。此外,如果假定存在边界条件,则它可以使我们正确地表示电缆末端区域的局部影响。为了获得可比较的结果,有限元模型将需要大量细分,因此需要大量元素。与有限元或有限元方法相比,提出的特征函数使我们能够解决动态问题而无需花费大量的计算工作。最后,为了展示所开发的连续模型的有用性,在已设计的墨西拿海峡大桥主缆上进行了应用。

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