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Improved system buckling analysis of effective lengths of girder and tower members in steel cable-stayed bridges

机译:斜拉桥钢梁和塔杆有效长度的改进系统屈曲分析

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This paper proposes an iterative system buckling analysis to determine reasonable effective lengths of girder and tower members in steel cable-stayed bridges. The modifications include the addition of a fictitious axial force to the geometric stiffness matrix with iterative eigenvalue computations. After verifying the proposed method by analyzing steel frames, we apply it to cable-stayed bridges with different center spans and girder depths. The effective lengths of members in these example bridges by the proposed method are compared with those found using conventional buckling analysis. The effects of the proposed method on slenderness ratios and compressive strengths are also discussed.
机译:本文提出了一种迭代系统屈曲分析,以确定钢斜拉桥中梁和塔构件的合理有效长度。修改包括通过迭代特征值计算将虚拟轴向力添加到几何刚度矩阵。在通过分析钢框架验证了所提出的方法之后,我们将其应用于具有不同中心跨度和梁深度的斜拉桥。通过示例方法,将这些示例桥中构件的有效长度与使用常规屈曲分析发现的有效长度进行比较。还讨论了所提方法对细长比和抗压强度的影响。

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