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Creep effects on dynamic behavior of concrete filled steel tube arch bridge

机译:蠕变对钢管混凝土拱桥动力特性的影响

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Long-term properties of concrete affect structures in many respects, not excepting dynamic behaviors. This paper investigates the influence of concrete creep on the dynamic behaviors of concrete filled steel tube (CFT) arch bridges, by means of combining the analytical method for the creep of axially compressed CFT members, which is based on Model B3 for concrete creep, with the finite element model of CFT arch bridges. By this approach, the changes of the stress and strain of each element in the bridge with time can be obtained and then transformed into damping and stiffness matrices in the dynamic equation involved in the finite element model at different times. A numerical example of a long-span half-through CFT arch bridge shows that creep influences the natural vibration characteristics and seismic responses of the bridge considerably, especially in the early age. In addition, parameter analysis demonstrates that concrete composition, compressive strength and steel ratio have an obvious effect on the seismic response of the CFT arch bridge.
机译:混凝土的长期特性在许多方面都会影响结构,但动态行为除外。本文结合基于B3模型的轴向受压CFT构件蠕变分析方法,研究了混凝土蠕变对钢管混凝土(CFT)拱桥动力特性的影响。 CFT拱桥的有限元模型。通过这种方法,可以获得桥梁中每个单元的应力和应变随时间的变化,然后将其转换为有限元模型所涉及的动力学方程在不同时间的阻尼矩阵和刚度矩阵。一个大跨度CFT拱桥的数值示例表明,蠕变会极大地影响桥梁的自然振动特性和地震响应,尤其是在早期。此外,参数分析表明,混凝土成分,抗压强度和钢比对CFT拱桥的地震响应有明显影响。

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