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Skewed bridge behaviors: Experimental, analytical, and numerical analysis.

机译:斜桥行为:实验,分析和数值分析。

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摘要

In the US, nearly 33.5% of highway bridges are skewed. In the past, these skewed bridges have been analyzed as straight bridges. Nevertheless, there exists an extensive literature indicating the mechanical behavior of skewed bridges being quite different from their straight counterparts. In this thesis, to better understand the behavior of skewed bridges, experimental, numerical, and analytical researches have been conducted. The analytical method proposed here is the first of its kind in the skewed bridge research, and is expected to aid the bridge engineers with their design.First, a three dimensional finite element analysis (FEA) model was developed and was calibrated by the physical measurement results of a real skewed bridge over M-85 and I-75 in Michigan. In this FEA model, generic bridges with various parameters such as different diaphragm types, bearing types, girder spacings, girder types, span lengths, and skew angles were analyzed to study the behavior of skewed bridges. The results were compared to the AASHTO-LRFD Specifications and as expected it was observed that the specifications does not cover all the aspects of a skewed bridge behavior.In addition, analytical solutions for skewed thick plates under transverse load and skewed bridges subjected to truck load were developed. The thick plate solution was obtained in a framework of oblique coordinate system. The governing equation in that system was first derived and the solution was obtained using the deflection and rotation as derivatives of a potential function developed here. The solution technique was applied to two illustrative application examples and the results were compared with numerical solutions. The two approaches yielded results in good agreement. Then, skewed beam bridges were modeled as an assemblage of several individual skewed thick plates supported on beams. To confirm the validity of the analysis process and the solution obtained, the moment and shear responses to truck loads are acquired using the analytical method and compared with that from FEA. In addition, the lateral distribution factors for moment and shear used in routine design is investigated based on comparison of the analytical approach and FEA.Finally, suggestions for future research are presented, including development of the temperature effect analysis and dynamic analysis. These analyses will provide further understanding of the behavior of skewed bridges.
机译:在美国,近33.5%的公路桥梁是倾斜的。在过去,这些偏斜的桥被分析为直桥。但是,有大量文献表明,斜桥的机械性能与直桥的力学性能完全不同。为了更好地理解斜桥的行为,本文进行了实验,数值和分析研究。本文提出的分析方法是斜桥研究中的第一种方法,有望为桥梁工程师的设计提供帮助。首先,开发了三维有限元分析(FEA)模型并通过物理测量进行了校准密歇根州M-85和I-75上一座真正的斜桥的结果。在此FEA模型中,分析了具有各种参数(例如,不同的膜片类型,轴承类型,大梁间距,大梁类型,跨度长度和偏斜角)的通用桥梁,以研究偏斜桥的性能。将结果与AASHTO-LRFD规范进行了比较,并且正如预期的那样,发现该规范并未涵盖偏斜桥行为的所有方面。此外,还对横向荷载下斜厚板和承受卡车荷载的斜桥的解析解进行了分析被开发。厚板溶液是在倾斜坐标系的框架内获得的。首先导出该系统中的控制方程,并使用偏转和旋转作为此处开发的势函数的导数获得解。该求解技术应用于两个示例性应用示例,并将结果与​​数值解进行了比较。两种方法的结果吻合良好。然后,将斜梁桥建模为支撑在梁上的几个单独的斜厚板的组合。为了确认分析过程和所获得解决方案的有效性,使用分析方法获得了对卡车负载的弯矩和剪力响应,并与FEA进行了比较。此外,在分析方法和有限元分析的比较基础上,研究了常规设计中弯矩和剪力的横向分布因子。最后,提出了对未来研究的建议,包括温度效应分析和动力分析的发展。这些分析将提供对斜桥行为的进一步了解。

著录项

  • 作者

    Chun, Bang-Jo.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Civil.Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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