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Determining the Middle Tower Stiffness Value in an In-Plane Double-Cable Triple-Tower Suspension Bridge

机译:确定平面双索三塔悬索桥中塔的刚度值

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Determining the stiffness of the middle tower is a key problem in designing multispan suspension bridges. In this study, the expressions for the upper and lower limits of the middle tower stiffness of double-cable triple-tower suspension bridges were deduced by implementing the antiskid safety factor and the deflection-to-span ratio of the main cable as the control indexes in an analytical algorithm to determine the appropriate stiffness of the middle tower. The formulas obtained were verified by finite-element models, and the results showed good agreement. Furthermore, the formulas can be used to quickly select the type of middle tower for a double-cable multispan suspension bridge at the initial design phase. The value ranges of the middle tower stiffness were compared between the double-cable and conventional multispan suspension bridges, and the results showed a large difference between the upper and lower limits of the middle tower stiffness in a double-cable system; the middle tower stiffness of the double-cable system was more likely to simultaneously meet the requirements of structural deformation and skid resistance of the main cable, and the value range of the middle tower stiffness can be expanded by increasing the sag-to-span ratio of the bottom cable or decreasing the ratio of the top cable. The lower limit of the middle tower stiffness of the double-cable multispan suspension bridge is smaller than that of the conventional bridge, which allows the flexible tower to be incorporated into the design of a double-cable system.
机译:确定中塔的刚度是设计多跨悬索桥的关键问题。本研究通过将防滑安全系数和主索挠度比作为控制指标,推导了双索三塔悬索桥中塔刚度的上下限表达式。用解析算法确定中塔的适当刚度。通过有限元模型对所得到的公式进行了验证,结果表明吻合良好。此外,这些公式可用于在初始设计阶段快速选择双索多跨悬索桥的中间塔的类型。比较了双索和常规多跨悬索桥的中间塔刚度值范围,结果表明,在双索系统中,中间塔刚度的上限和下限之间存在较大差异。双芯电缆系统的中间塔架刚度更可能同时满足主电缆的结构变形和防滑性的要求,并且可以通过增加下垂比来扩展中间塔架刚度的值范围或降低顶部电缆的比例。双缆多跨悬索桥的中塔刚度的下限小于常规桥的下限,这允许将柔性塔架并入双缆系统的设计中。

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