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Cable Force Adjustment of Torsion Cable-Stayed Bridge

机译:扭力斜拉桥索力调整

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Cable force adjustment of cable-stayed bridge has been a hotspot. The structure of the cable-stayed bridge is more complicated, and its cable force adjustment method is also difficult. In order to explore the reasonable method to adjust the cable force of the torsion cable-stayed Bridges, this paper discusses the objectives and principles of cable tension adjustment. The influence matrix method and the finite element analysis software midas civil 2012 of bridge structure are used to design the scheme. The cable adjustment scheme is developed by using the trial algorithm, and the cable adjustment effect is analyzed. Firstly, influence matrix method was used to analyze the mutual influence degree between adjacent cables. Then the adjusting value of cable force is calculated by iteration until convergence. Input the adjustment values of each step into the finite element analysis software to analyze the adjustment process and results The whole bridge is monitored and measured in the course of cable adjustment. The monitoring results show that the cable force is close to the target value after the adjustment of the cable force. The alignment of bridge deck after adjustment is also in good agreement with the design, and the deflection of tower top is improved. This practice will provide a more important reference for similar project.
机译:斜拉桥的索力调整一直是一个热点。斜拉桥的结构更加复杂,其索力调节方法也很困难。为了探索合理的方法来调整扭力斜拉桥的索力,本文讨论了索力调整的目的和原理。该方案采用桥梁结构的影响矩阵法和有限元分析软件Midas Civil 2012进行设计。利用试验算法开发了电缆调整方案,并分析了电缆调整效果。首先,采用影响矩阵法分析相邻电缆之间的相互影响程度。然后,通过迭代计算直至收敛为止的索力调整值。将每一步的调整值输入到有限元分析软件中,以分析调整过程和结果。在调整电缆过程中,将对整个桥梁进行监测和测量。监测结果表明,调整索力后索力接近目标值。调整后的桥面对准也与设计吻合,改善了塔顶的挠度。这种做法将为类似项目提供更重要的参考。

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