一种考虑鞍座旋转的悬索桥锚跨张力计算方法

Xuejin Huo , Jia Chen , Dongxu Wang , Li Zhu
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引用次数: 1

摘要

本文报道了一种考虑旋转的锚索张力计算方法。建立了一种共移坐标系——鞍座局部坐标系。该系统通过坐标系的旋转来实现斜鞍的旋转,所有的计算都在这个坐标系中进行。考虑锚固面通过锚固面局部坐标系的旋转而旋转,将锚固链的锚固点坐标转换为局部鞍坐标系。在计算中采用了两层迭代。在内部迭代中,以竖向弯道末端的索力为变量,以锚固点纵坐标为目标值。在外迭代中,以垂直弯道末端的垂直切向角为变量,以锚固点纵坐标为目标值。该方法实现了斜鞍面和锚面的旋转,具有简单、方便、无需近似等优点。精确地考虑了旋转的影响;该方法在两层迭代过程中表现出稳定、适应性强、效率高等特点,并已成功应用于全球首座千米级公路铁路联合悬索桥五峰山长江大桥的施工控制。
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A method for calculating strand tension in the anchor span of a suspension bridge considering the rotation of a splay saddle

This paper reports a method for strand tension in anchor spans considering rotation. A kind of co-moved coordinate system, a saddle local coordinate system, was set up. This system implemented the rotation of the splay saddle through the rotation of the coordinate system, and all calculations proceeded in this coordinate system. Considering the rotation of the anchoring surface by the rotation of the local coordinate system of the anchoring surface, the anchorage point coordinates of strands were transformed to the local saddle coordinate system. There was a two-layer iteration adopted in the calculation. In the inner iteration, the cable force at the end of the vertical bend was taken as the variable, and the ordinate of the anchorage point was taken as the target value. In the outer iteration, the vertical tangential angle at the end of the vertical bend was taken as the variable, and the ordinate of the anchorage point was taken as the target value. The method carried out the rotation of the splay saddle and anchor surface and was simple, convenient and without approximation. The effect of rotation was considered precisely; it showed stability during the process of two-layer iteration, powerful adaptation and higher efficiency and had been successfully applied in the construction control of the Wufengshan Yangtze River Bridge, the world's first kilometer-level combined highway and railway suspension bridge.

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