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Evaluation of Shear Capacity of a Prestressed Concrete Box Girder Bridge using Non-Linear FEM

机译:基于非线性有限元的预应力混凝土箱梁桥抗剪承载力评估

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摘要

In this paper it is demonstrated how higher load carrying capacity with respect to combined shear and torsion can be determined by non-linear finite element (FE) analyses of bridges. A prestressed concrete box girder bridge, the Kallosund Bridge, was evaluated. The Kallosund Bridge, on the west coast of Sweden, is a 45-year-old, cast in situ concrete bridge with four spans, constructed by the free cantilevering method. The case study presented indicates a substantially higher load carrying capacity than for bridge assessment by conventional design methods. In the non-linear analyses of the Kallosund Bridge, about 40% higher design bogie load than in the initial structural assessment was reached (B - 250 kN), together with the other design loads in the ultimate limit state (ULS), before a shear failure developed for the critical load case studied. By improving the model and with "deformation controlled" loading, an even higher failure load is a likely result.
机译:本文证明了如何通过桥梁的非线性有限元(FE)分析来确定相对于剪切和扭转的更高承载能力。评估了预应力混凝土箱梁桥Kallosund桥。瑞典西海岸的Kallosund桥是一座45岁的现浇混凝土桥梁,有四个跨度,是通过自由悬臂法建造的。提出的案例研究表明,相比传统设计方法进行桥梁评估,其承载能力要高得多。在Kallosund桥的非线性分析中,在设计前,达到了比初始结构评估(B-250 kN)高约40%的设计转向架载荷,以及其他极限极限状态(ULS)的设计载荷。针对所研究的临界载荷情况开发了剪切破坏。通过改进模型和“变形控制”载荷,可能会导致更高的破坏载荷。

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