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Concrete arch bridges built by lattice cantilevers

机译:格子悬臂建造的混凝土拱桥

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摘要

In this paper a study about concrete arch bridges built by lattice cantilevers is presented. Lattice cantilevers are partial structures composed of deck, arch, piers and provisional steel diagonals, organized as reticular cantilever girders, in order to build arch bridges without the use of centrings, supports or temporary towers. Characteristics of this construction methodology with its variants are explained together with their implications in the erection sequence. Partial elastic scheme method is implemented in order to find initial forces of temporary cables and a forward analysis is carried out to follow the actual sequence of construction, by extending a procedure already applied to concrete cable-stayed bridges and to arches built by the classical suspended cantilever method. A numerical application on a case-study of a concrete arch bridge is performed together with a comparison between different methodologies followed for its construction sequence. Differences between erection by lattice cantilevers and cable-stayed cantilevers, are discussed. Results can be useful for designers in conceptual design of concrete arch bridges.
机译:本文对格构悬臂建造的混凝土拱桥进行了研究。格子悬臂是由甲板,拱,墩和临时钢对角线组成的局部结构,被组织成网状悬臂梁,以便在不使用中心,支撑或临时塔的情况下建造拱桥。解释了此构造方法的特点及其变体,以及它们在安装顺序中的含义。为了找到临时缆索的初始力,实施了局部弹性方案方法,并通过扩展已经应用于混凝土斜拉桥和经典悬索桥所建拱的程序,进行正向分析以遵循实际施工顺序悬臂法。在对混凝土拱桥案例研究进行数值应用的同时,还对不同方法的建造顺序进行了比较。讨论了晶格悬臂和斜拉悬臂的架设之间的差异。结果对于设计者在混凝土拱桥的概念设计中可能很有用。

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