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Optimal design of semi-fan cable-stayed bridges

机译:半扇形斜拉桥的优化设计

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摘要

The design of cable-stayed bridges is generally controlled by a large number of design variables and constraints, making the traditional design methods sophisticated, expensive, and time consuming. Moreover, the conventional design methods could not guarantee the cost optimality of the final solution. In this study, a numerical design tool that integrates a finite element model, genetic algorithm, simple polynomial functions for evaluating post-tensioning cable forces, and design methodologies is developed specially to optimize the design of cable-stayed bridges. The loads, design, and constraints used in the numerical model are developed based on the Canadian Highway Bridge Design Code CAN/CSA-S6-06. The efficiency and practicality of the proposed numerical design tool have been demonstrated by optimizing a practical sized cable-stayed bridge.
机译:斜拉桥的设计通常受大量设计变量和约束条件的控制,从而使传统的设计方法复杂,昂贵且耗时。而且,传统的设计方法不能保证最终解决方案的成本最优。在这项研究中,专门开发了一种将有限元模型,遗传算法,用于评估后张拉索力的简单多项式函数以及设计方法相结合的数值设计工具,以优化斜拉桥的设计。数值模型中使用的荷载,设计和约束条件是根据加拿大公路桥梁设计规范CAN / CSA-S6-06开发的。通过优化实际尺寸的斜拉桥已经证明了所提出的数值设计工具的效率和实用性。

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