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Nonlinear Stability Analysis of a Composite Girder Cable-Stayed Bridge with Three Pylons during Construction

机译:三塔组合梁斜拉桥施工过程的非线性稳定性分析

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Based on the nonlinear stability analysis method, the 3D nonlinear finite element model of a composite girder cable-stayed bridge with three pylons is established to research the effect of factors including geometric nonlinearity, material nonlinearity, static wind load, and unbalanced construction load on the structural stability during construction. Besides, the structural nonlinear stability in different construction schemes and the determination of temporary pier position are also studied. The nonlinear stability safety factors are calculated to demonstrate the rationality and safety of construction schemes. The results show that the nonlinear stability safety factors of this bridge during construction meet the design requirement and the minimum value occurs in the maximum double cantilever stage. Besides, the nonlinear stability of the structure in the side of edge-pylon meets the design requirement in the two construction schemes. Furthermore, the temporary pier can improve the structure stability, effectively, and the actual position is reasonable. In addition, the local buckling of steel girder occurs earlier than overall instability under load in some cable tension stages. Finally, static wind load and the unbalanced construction load should be considered in the stability analysis for the adverse impact.
机译:基于非线性稳定性分析方法,建立了三塔式组合梁斜拉桥的3D非线性有限元模型,研究了几何非线性,材料非线性,静风荷载和不平衡施工荷载等因素对桥墩的影响。施工过程中的结构稳定性。此外,还研究了不同施工方案下的结构非线性稳定性以及临时墩位置的确定。计算了非线性稳定安全系数,以证明施工方案的合理性和安全性。结果表明,该桥在施工过程中的非线性稳定安全系数满足设计要求,最大值出现在最大双悬臂阶段。此外,边塔侧面结构的非线性稳定性满足两种施工方案的设计要求。此外,临时墩可以有效地提高结构的稳定性,并且实际位置是合理的。另外,在某些电缆拉力阶段,钢梁的局部屈曲发生在载荷作用下的整体失稳之前。最后,在稳定性分析中应考虑静态风荷载和不平衡施工荷载,以免产生不利影响。

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