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Geometric nonlinear behavior of cable-stayed bridges.

机译:斜拉桥的几何非线性行为。

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摘要

Cable-stayed bridges have received more attention due to their ability to arch over large spans. As the bridge span increases, the high strength material have been used and the bridge becomes more flexible and, as a result, more susceptible to nonlinear behavior. The geometric nonlinear behavior of cable-stayed bridges are studied. Cable-stayed bridges with geometry similar to the Quincy Bayview Cable-Stayed Bridge under static and dynamic (traffic type loads) were studied. The subjects of this study include the following: (1) Two dimensional and three dimensional finite element models of cable-stayed bridges: In two dimensional finite element model, the pylons and the bridge deck were modeled as beam elements. The cables were modeled as truss elements. In three dimensional model, the pylons were modeled as beam elements. The bridge deck and the composite girders were modeled as shell elements and the equivalent dimension of the bridge deck and the composite girders were formed. (2) The nonlinearity effect in static analysis: The load-displacement curve of the pylons in the horizontal direction and the load-displacement curve of the bridge deck in the vertical direction were found. (3) Buckling influence lines: Tabular and graphical results were made by parametric study of cable-stayed bridges. (4) Cable stiffness: Cable nonlinear behavior and the effect of modified Young's modulus (E) of the cables in buckling analysis were studied. The buckling loads of the simple model of the cable-stayed bridge and the buckling loads of the finite element model of cable-stayed bridge were compared. (5) Cable preloading selection: Four different preloading methods were considered and the most effective method was found. (6) The effect of buckling load under different support conditions: Eight different support conditions were considered in this project. (7) The nonlinear effect on dynamic analysis: The axial force effect (bridge deck only) in dynamic frequency analysis under normal design load was estimated. The critical velocities in the velocity range between 20 MPH and 90 MPH were found. (8) Comparison of two dimensional and three dimensional analysis: The importance of the three dimensional analysis was estimated by comparison of the two dimensional and three dimensional buckling loads and buckling mode shapes.; In conclusion, criteria were established to determine the importance and necessity of the above mentioned nonlinearities in the analysis and design of cable-stayed bridges.
机译:斜拉桥具有跨度大的拱形能力,因此受到越来越多的关注。随着桥跨度的增加,已使用了高强度材料,并且桥变得更加柔韧,因此,更容易受到非线性行为的影响。研究了斜拉桥的几何非线性行为。研究了在静态和动态(交通荷载)作用下具有与Quincy Bayview斜拉桥相似的几何形状的斜拉桥。本研究的主题包括:(1)斜拉桥的二维和三维有限元模型:在二维有限元模型中,将塔架和桥面板建模为梁单元。电缆被建模为桁架元素。在三维模型中,将塔架建模为梁单元。将桥面板和复合梁作为壳体单元进行建模,并形成桥面板和复合梁的等效尺寸。 (2)静力分析中的非线性效应:找到了水平方向上的塔架荷载-位移曲线和垂直方向上的桥面板的荷载-位移曲线。 (3)屈曲影响线:通过斜拉桥的参数研究得出表格和图形结果。 (4)电缆刚度:研究了电缆的非线性行为以及改进的杨氏模量(E)在屈曲分析中的作用。比较了斜拉桥简单模型的屈曲载荷和斜拉桥有限元模型的屈曲载荷。 (5)电缆预压的选择:考虑了四种不同的预压方法,并找到了最有效的方法。 (6)不同支撑条件下屈曲载荷的影响:本项目考虑了8种不同的支撑条件。 (7)动力分析的非线性效应:估算了正常设计载荷下动力频率分析中的轴向力效应(仅桥面)。发现了在20 MPH和90 MPH之间的速度范围内的临界速度。 (8)二维和三维分析的比较:三维分析的重要性是通过比较二维和三维屈曲载荷和屈曲模态来估算的。总之,建立了确定上述非线性在斜拉桥分析和设计中的重要性和必要性的标准。

著录项

  • 作者

    Wang, Yang-Cheng.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 p.4510
  • 总页数 341
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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