华南理工大学学报(自然科学版)2026,Vol.54Issue(5):85-95,11.DOI:10.12141/j.issn.1000-565X.250246
板桁组合梁斜拉桥的横向非对称索力优化
Lateral Asymmetric Cable Force Optimization of Cable-Stayed Bridges with Plate-Truss Composite Girders
摘要
Abstract
To accommodate the alignment of approach roads on both banks,some long-span cable-stayed bridges with plate-truss composite girders adopt a laterally asymmetric lane arrangement.However,eccentric loading in-duces significant torsional effects in the main girder,which traditional cable force optimization methods struggle to account for effectively.To mitigate the adverse effects caused by lateral asymmetry,this paper proposes a stepwise optimization strategy for the finished bridge cable forces considering lateral asymmetry,based on the decoupling characteristics of vertical bending and lateral bending-torsion coupling in left-right symmetric cross-sections.Firstly,an equivalent single-beam model is established under the condition of consistent bending and torsional stiff-ness to facilitate cable force optimization analysis.The displacement response error between the simplified equiva-lent model and the refined model is within 6%.Subsequently,a stepwise cable force optimization procedure is pro-posed,consisting of two stages:average cable force optimization and cable force difference optimization.The first stage aims to minimize the bending strain energy to determine a reasonable distribution of average cable forces,while the second stage adjusts the cable force difference between the two sides to counteract the eccentric torque in-duced by the self-weight of the main girder.To reduce the variable dimensionality,B-spline curves are employed to replace the original dense cable force variables,with the control points of the spline curves serving as optimization variables.A gradient-based algorithm is used for solution.The results demonstrate that cable force difference opti-mization effectively balances the eccentric torque caused by the girder self-weight and significantly reduces the tor-sional angle of the main girder,thereby enabling the bridge to achieve the desired reasonable internal force state and configuration.Moreover,the stepwise optimization strategy significantly reduces computational cost through problem decoupling and dimensionality reduction,reducing the number of finite element analyses by approximately one-third while maintaining optimization accuracy and convergence stability.关键词
斜拉桥/板桁组合梁/横向非对称设计/等效单梁模型/索力优化Key words
cable-stayed bridge/plate-truss composite girder/lateral asymmetric design/equivalent single-beam model/cable force optimization分类
交通工程引用本文复制引用
马源,肖汝诚,商志诚,宋超林,孙斌..板桁组合梁斜拉桥的横向非对称索力优化[J].华南理工大学学报(自然科学版),2026,54(5):85-95,11.基金项目
国家自然科学基金项目(52308196) (52308196)
国家重点研发计划项目(2021YFB1600300) (2021YFB1600300)
宁波市交通运输局科技项目Supported by the National Natural Science Foundation of China(52308196)and the National Key R&D Pro-gram of China(2021YFB1600300) (52308196)