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Balanced-lift method for prestressed concrete bridges - 25% lower cost compared to steel-concrete composite bridges

机译:预应力混凝土桥梁的平衡升降方法 - 与钢混凝土复合桥相比,成本下降25%

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摘要

The first-time application of the balanced-lift method for the bridges over the Lahnbach and Lafnitz rivers in Austria proved that these prestressed concrete bridges with 2.0 m high bridge girders constructed according to this method incurred 25% lower costs compared to the originally planned steel-concrete composite bridges with 4.2 m high steel girders. Costs could be reduced not only as a result of applying the balanced-lift method, but also by installing thin-walled, trough-shaped precast girders composed of 70 mm thick precast slabs for the side walls and 120 mm thick bottom slabs. Tendons were incorporated in order to compress the 20 mm thick joints between the precast slabs in the final condition. Two 36 m long bridge girders were assembled in a vertical position for each of the bridge girders. Compression struts were required for rotating the bridge girders from their initial vertical position into their final horizontal position. In the installed condition, these struts are part of the bridge structure and reduce its spans. After filling the compression struts and the thin-walled precast girders with in-situ concrete and completing the deck slab, the two bridges exhibit the same performance characteristics as conventional prestressed concrete bridges, providing the added benefit of a dense and visually appealing fair-faced concrete surface. The balanced-lift method is also suitable for erecting replacement structures because it provides the option of installing the compression struts and the bridge girders in the vertical position in confined environments. The use of precast elements for the compression struts and the bridge girders comes with the advantage of a short time to project completion because no formwork or shoring system is needed on the construction site.
机译:奥地利Lahnbach和Lafnitz河流桥梁的第一次适用于桥梁的桥梁,证明了与最初规划的钢相比,这些预应力混凝土桥与2.0米高的高桥梁梁构造的成本下降了25% - 具有4.2米高钢梁的复合桥梁。不仅由于应用平衡升降方法的结果,而且通过安装薄壁的槽状预制梁,而且可以减少成本,该预制梁为侧壁和120mm厚的底板组成的70毫米厚的预制板。结合肌腱,以便在最终条件下压缩预制板之间的20mm厚接头。两个36米长的长桥梁组装在每个桥梁梁上的垂直位置。需要压缩支柱,以将桥梁梁从初始垂直位置旋转到最终水平位置。在安装的条件下,这些支柱是桥梁结构的一部分,并减少其跨度。在填充压缩支柱和具有原位混凝土的薄壁预制梁并完成甲板板后,两座桥梁表现出与传统预应力混凝土桥相同的性能特征,提供了密集和视觉上吸引人的公平面对的额外福利混凝土表面。平衡升降方法也适用于架设更换结构,因为它提供了在限制环境中的垂直位置安装压缩支柱和桥梁梁的选择。用于压缩支柱和桥梁梁的预制元件的使用具有短时间的优势,因为施工现场不需要模板或支撑系统。

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