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Cable Tension Estimation for Suspen-Dome Structures Based on Numerical Method

机译:基于数值方法的悬索穹顶结构电缆拉力估算

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摘要

Suspen-dome structures have been widely adopted due to their superiority over traditional structures. Cable condition is crucial to the safety of suspen-dome structures, especially the magnitude of cable force. However, thus far, investigations on estimating the tension in this type of structure remain lacking. In this study, double-element method was initially developed to simulate cables, and its accuracy was validated. Tension compensation method was adopted to ensure that the cable force is equal to the designed value. Then, transient analysis was conducted based on an actual suspen-dome structure. The dynamic responses derived based on the overall structures and the simplified models were compared, and the reliability of the simplified models was validated. Finally, parametrical analysis was conducted to investigate the influence of support stiffness and cable-bending stiffness on the fundamental frequency of cables. A cable tension estimation program, which was suitable for suspen-dome structures, was updated. Results indicate that vibration method can maintain good accuracy when used in suspen-dome structures.
机译:悬挂穹顶结构由于其优于传统结构而被广泛采用。电缆状况对于悬架结构的安全至关重要,尤其是电缆受力的大小。然而,到目前为止,仍缺乏关于估计这种结构的张力的研究。在这项研究中,最初开发了双元素方法来模拟电缆,并验证了其准确性。采用张力补偿方法,以确保电缆力等于设计值。然后,根据实际的悬架结构进行瞬态分析。比较了基于整体结构和简化模型得出的动力响应,并验证了简化模型的可靠性。最后,进行参数分析以研究支撑刚度和电缆弯曲刚度对电缆基频的影响。更新了适合悬架结构的电缆张力估算程序。结果表明,振动法在悬架结构中使用时可以保持良好的精度。

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