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Considerations for the design of doubly unsymmetrical precast pretensioned beams used for box girder construction

机译:设计用于箱梁的双不对称预制预应力梁的设计注意事项

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摘要

Many box girder bridges are constructed with doubly unsymmetrical precast beam units. The aim of this paper is to present special considerations for the optimum arrangement of pretensioned strands in a simply supported precast pretensioned beam with a doubly unsymmetrical section. The goal of the optimum arrangement is to minimize the distortion (lateral sway phenomenon) caused by the doubly unsymmetrical characteristic of the beam section at transfer. The study shows that the distortion of the unsymmetrical section is minimized when the resultant stresses at transfer are constant over all of the top flange and over all of the bottom flange of the precast beam for most of the sections within the beam length. In this case, the neutral axes of these sections will be horizontal with respect to the beam section. This approach is verified with the help of two different finite element models. In the first model, the beam is modelled as one-dimensional space frame elements; in the second model, the beam is modelled using three-dimensional solid elements. A practical example of a box girder bridge made from doubly unsymmetrical precast pretensioned beams in the APM (Automated People Mover) elevated bridge project in Saudi Arabia is also presented.
机译:许多箱形箱梁桥都是用双重非对称预制梁单元建造的。本文的目的是提出一些特殊考虑,以便在具有双重不对称截面的简单支撑的预制预应力梁中优化预应力股。最佳布置的目的是最大程度地减少在传输时由光束截面的双重不对称特性引起的变形(横向摇摆现象)。研究表明,当在梁长度内的大部分截面上,在预制梁的所有顶部凸缘和所有底部凸缘上的传递时所产生的合力恒定时,非对称截面的变形会最小化。在这种情况下,这些部分的中性轴将相对于梁部分是水平的。借助于两个不同的有限元模型验证了该方法。在第一个模型中,将光束建模为一维空间框架元素;在第二个模型中,使用三维实体元素对梁进行建模。还介绍了在沙特阿拉伯APM(自动人行道)高架桥项目中由双不对称预制预应力梁制成的箱梁桥的实际示例。

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