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Analysis of the shear-lag effect in composite bridges with complex static scheme by means of beam elements

机译:通过光束元件分析复合静态方案复合桥梁的剪切滞后效应

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摘要

This paper deals with the implementation of a beam finite element, suitable for the analysis of steel-concrete composite decks affected by the shear-lag in the slab, in a program for the analysis of bridges with complex static scheme, such as arch bridges, bow-string bridges and cable stayed bridges. The deck model and the relevant beam finite element are adapted in the three-dimensional space on the basis of a model previously proposed by the authors. The problems of the spatial orientation of the element and the connectivity with traditional beam and truss finite elements are discussed. A special constraint is introduced to solve the ill-conditioned problem due to the zero torsional stiffness and the zero flexural stiffness on the co-ordinate plane parallel to the slab. Finally, an application to a realistic arch-latticed bridge is presented in order to show the potentiality of the method.
机译:本文涉及梁有限元的实施,适用于分析由板坯中剪切滞后影响的钢混凝土复合甲板,在用于分析具有复杂静态方案的桥梁,如拱桥,弓弦桥梁和电缆停留的桥梁。基于先前由作者提出的模型,甲板模型和相关光束有限元件在三维空间中适用于三维空间。讨论了元件空间取向的问题及与传统光束和桁架有限元的连接。引入了特殊约束来解决由于零扭转刚度和平行于板的坐标平面上的零弯曲刚度而产生的不良问题。最后,提出了对现实拱形桥梁的应用,以显示该方法的潜力。

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