首页> 外文期刊>The Baltic journal of road and bridge engineering >ANALYSIS OF DECK SLAB OF REINFORCED CONCRETE GERBER-GIRDER BRIDGE WIDENED BY ADDITION OF CONTINUOUS STEEL-CONCRETE COMPOSITE GIRDERS
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ANALYSIS OF DECK SLAB OF REINFORCED CONCRETE GERBER-GIRDER BRIDGE WIDENED BY ADDITION OF CONTINUOUS STEEL-CONCRETE COMPOSITE GIRDERS

机译:连续钢-混凝土组合梁加筋加固的钢筋混凝土梁桥桥面板分析

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摘要

Many Gerber-girder bridges have become obsolete in terms of deck width and load carrying capacity. If bridge replacement is not necessary, additional girders are installed. Sometimes, due to erection convenience, the added girders do not replicate the static scheme of the refurbished structure. Such an arrangement requires special attention to preserve structural durability. An example of the inappropriate arrangement of the widening of a Reinforced Concrete Gerber-girder road bridge is presented together with an alternative concept of refurbishment based on the addition of the continuous steel-concrete girders as the outermost ones. The added deck slab connects the added and the existing parts of the structure. Attention is drawn the static analysis of the added deck slab and the influence of the added outermost girders that do not replicate the static scheme of the existing ones. Due to different static schemes of the existing and the added girders, the traditional method of the deck slab analysis is inappropriate. The Finite Element 3D model is to be applied to access bending moments in the deck slab spans correctly. It is shown that: a) the analysis of the distribution of the bending moments in the existing and the added slab spans, especially near Gerber-hinges, should be based on the Finite Element 3D modelling; b) the analysis should consider live loads acting on the whole width of the Gerber-hinge span; c) the bending moment distribution in the widened deck slab is sensitive to the distance to the Gerber hinge.
机译:在甲板宽度和承载能力方面,许多格伯梁桥已经过时。如果不需要更换桥,则安装其他大梁。有时,由于安装方便,添加的大梁无法复制翻新结构的静态方案。这种布置需要特别注意以保持结构耐久性。结合钢筋混凝土连续梁作为最外层梁的改建方案,提出了钢筋混凝土Gerber-girder公路桥梁扩建不当布置的示例。添加的甲板平板连接结构的添加部分和现有部分。注意增加的甲板平板的静态分析和增加的最外梁的影响,这些梁不能复制现有框架的静态方案。由于既有梁和增加梁的静力方案不同,传统的楼板分析方法是不合适的。有限元3D模型将被应用来正确获取桥面板跨度中的弯矩。结果表明:a)在现有和增加的板跨中,特别是在Gerber-Hinges附近,弯矩的分布分析应基于有限元3D建模; b)分析应考虑作用在Gerber铰链跨度整个宽度上的活荷载; c)加宽的甲板平板中的弯矩分布对到格柏铰链的距离敏感。

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