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Staged Structural Assessment of a Large Concrete Box-girder Bridge

机译:大型混凝土箱梁桥的阶段性结构评估

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Currently infrastructure owners and operators experience a big challenge when it comes to their existing assets. Increased traffic loads and changing demands often require updates or renovations of existing bridges which may well be decades old. When changes are required, often the structural safety needs assessed. Because building codes and guidelines get updated as the state of the art develops, a particular challenge is that apart from increasing loads, the capacity according to calculations may decrease. The Maasbrug Grubbenvorst, a post-tensioned concrete box-girder bridge with two cells, is a fine example of these challenges. New requirements cause changes to the traffic lane lay out, which in turn requires a new assessment of the structure. Constructed in the 1970's, current design practice for shear force has significantly changed compared to the moment the original design was conceived. This paper deals with the structural assessment of the bridge and focusses on the distribution of shear forces over the webs of this bridge. In beam models the entire cross section of the box-girder is schematized into a single beam element. Because of the skew spans of the bridge, the distribution of shear forces over the webs cannot be predicted by rules of thumb. Therefore, a new method is used that allows to calculate the correct distribution of shear force from these beam models. Hence, the benefits of beam models can be used for skew structures as well. In this paper it is shown that using this method, insight into the behavior of the structure can be gained rapidly. The method uses framework models for cross section analysis, while the longitudinal analysis is carried out with the beam model. The calculations results from this beam-framework model are compared to 3D FEM calculations. The paper concludes with the conclusion from the assessment as well as peek into the future of the Dutch guidelines on Structural Assessment of existing structures.
机译:当前,基础架构所有者和运营商在现有资产方面面临着巨大挑战。不断增加的交通负荷和不断变化的需求通常要求对可能已有数十年历史的现有桥梁进行更新或翻新。当需要更改时,通常会评估结构安全需求。由于建筑规范和准则会随着最新技术的发展而更新,因此一个特殊的挑战是,除了增加负荷外,根据计算的能力可能会降低。 Maasbrug Grubbenvorst是一座带有两个单元的后张预应力混凝土箱梁桥,是应对这些挑战的一个很好的例子。新的要求导致行车道布局发生变化,这又需要对结构进行新的评估。始建于1970年代,当前的剪力设计实践与最初设计的那一刻相比已发生了重大变化。本文讨论了桥梁的结构评估,并着重于该桥梁的腹板上的剪力分布。在梁模型中,箱形梁的整个横截面被示意为单个梁单元。由于桥的斜跨,无法通过经验法则来预测剪力在腹板上的分布。因此,使用了一种新方法,该方法可以从这些梁模型计算剪切力的正确分布。因此,梁模型的好处也可以用于偏斜结构。在本文中表明,使用这种方法可以快速获得对结构行为的洞察力。该方法使用框架模型进行横截面分析,而纵向分析则使用梁模型进行。将该梁框架模型的计算结果与3D FEM计算进行比较。本文以评估得出的结论作为结论,并展望了荷兰现有结构的结构评估指南的未来。

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