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A novel method for dynamic analysis of complex multi-segment cable systems

机译:复杂多段电缆系统动态分析的一种新方法

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In actual engineering, the cable structure is divided into several natural cable segments due to the existence of lateral supports. During the vibration, each cable segment will have different static and dynamic configurations, which greatly increases the difficulty of structural dynamic analysis. To accurately analyze the dynamic characteristics of this type of systems, this paper proposes an exact dynamic analysis method which can consider the influence of multiple factors such as bending stiffness, sag, and additional cable force based on dynamic stiffness theory, and the analytical expression of the additional cable forces of multi-segment cable systems is obtained. Besides, to consider the geometric nonlinear characteristics of small sag cables, an improved Wittrick-Williams algorithm is proposed, which is suitable for solving the frequency equation of multi-segment cable system. The accuracy of the method is verified by experiment and the finite element method.
机译:在实际工程中,由于横向支撑件存在,电缆结构被分成几个天然电缆段。在振动期间,每个电缆段都具有不同的静态和动态配置,这大大增加了结构动态分析的难度。为了准确地分析这种类型的系统的动态特性,本文提出了一种精确的动态分析方法,可以考虑基于动态刚度理论的弯曲刚度,下垂和附加电缆力等多种因素的影响及分析表达获得多段电缆系统的附加电缆力。此外,要考虑小凸台电缆的几何非线性特性,提出了一种改进的Wittrick-Williams算法,其适用于求解多段电缆系统的频率方程。通过实验和有限元方法验证该方法的准确性。

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