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Elasto-Plastic Stability Analysis of a Twin Continuous Rigid Frame Bridge with 195m High Single Pier

机译:195米高单墩双连续刚架桥的弹塑性稳定性分析

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Aiming at 195m high single pier of Hezhang Bridge, elasto-piastic stability analysis on static wind loads and temperature gradients at the longest cantilevered stage for single pier has been performed by ANSYS software. To overcome the problem on buckling of main girder ahead of piers, a loading way with concentrated force instead of uniform load was presented. A general expression of beam element-based temperature distribution along pier was given. Stability analysis under three different actions of wind load at the longest cantilevered stage was conducted according to Chinese Wind-res is tent Design Specification for Highway Bridges. The results show that whatever static wind load or thermal gradient effect is, the inelastic stability factors against buckling are all over 3.0 and satisfy the engineering requirement.
机译:针对195米的休州桥单码头,静电型稳定性稳定性分析静态风力载荷和温度梯度为单墩的最长悬臂阶段,已由ANSYS软件执行。为了克服码头面前主梁屈曲的问题,提出了具有集中力而不是均匀载荷的加载方式。给出了沿码头的梁元素的温度分布的一般表达。稳定性分析在最长的悬臂阶段的风负荷的三种不同动作的稳定性分析根据中国风 - Res是公路桥梁的帐篷设计规范进行。结果表明,无论静电负荷还是热梯度效果,抗屈曲的无弹性稳定因素都超过3.0并满足工程要求。

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