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Stability Analysis of Long-Span Continuous Rigid Frame Bridge with Thin-Wall Pier

机译:薄壁墩大跨度连续刚构桥的稳定性分析

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摘要

During cantilever cast in construction of high-pier and large-span continuous rigid frame bridges, structural stability in the longest cantilevered stage is very important. Based on a practical design case of a large-span continuous rigid frame bridge in Wuhan, the longest span stability coefficient is calculated with linear-buckling and nonlinear-buckling methods, respectively. The influences of both geometrical nonlinearity and the dual nonlinearity of material and geometry are considered. Numerical results indicate that the nonlinear solution is necessary to stability analysis because linear buckling loads are much higher than those of nonlinear buckling. Thus, the edge fiber yield criterion is more convenient and faster than ultimate loading criterion when estimating nonlinear stability of structure, and can be used easily in the initial engineering design.

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  • 来源
    《西南交通大学学报:英文版》 |2008年第3期|P.247-253|共7页
  • 作者单位

    Wuhan;

    Tianxingzhou;

    Highway;

    and;

    Bridge;

    Investment;

    Development;

    Co.;

    ,Ltd,;

    Wuhan;

    430074,;

    China;

    School;

    of;

    Civil;

    Engineering,;

    Huazhong;

    University;

    of;

    Scienee;

    and;

    Technology,;

    Wuhan;

    430074,;

    China;

    Hubei;

    Key;

    Lab;

    of;

    Control;

    Structures,;

    Huazhong;

    University;

    of;

    Science;

    and;

    Technology,;

    Wuhan;

    430074,;

    China;

    Department;

    of;

    Architecture;

    and;

    Civil;

    Engineering,;

    University;

    of;

    Bath,;

    Bath;

    BA27AY,;

    UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 桥梁建筑材料;
  • 关键词

    连续硬框架桥; 稳定性分析; 材料纤维; 非线性弯曲;

    机译:连续硬框架桥;稳定性分析;材料纤维;非线性弯曲;
  • 入库时间 2022-08-19 04:20:16
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