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Seismic analysis and evaluation of skew highway bridges.

机译:斜交公路桥梁的地震分析与评估。

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摘要

A theoretical and experimental investigation of the seismic response of skew highway bridges is presented. The study begins with the description of a rigid deck bridge model for short span skew bridges. Formulas for computing earthquake response are developed, and parameters that significantly influence the dynamic response of the bridges are identified. The study indicates that the response of a given skew bridge depends not only on its deck aspect ratio, the stiffness eccentricity ratio, the skew angles, and its natural frequencies, but also on its frequency ratio.; For longer span skew bridges, the use of the rigid deck assumption is questionable. To study the effect of deck flexibility, finite element models are developed to study the behavior of a representative medium span skew reinforced concrete box girder bridge. The effects of superstructure flexibility, substructure boundary conditions, structural skewness and stiffness eccentricity on the seismic response of the bridge are studied using response spectrum analyses.; A refined stick model that utilizes a dual-beam representation of the bridge deck is proposed for preliminary dynamic analysis and seismic assessment of medium or long span skew bridges. The validity of the model is established by comparing results with numerical solutions obtained for skew plates and a skew bridge.; When bridges are subjected to moderate-to-strong earthquakes, inelasticity often occurs at incipient failure. The nonlinear analysis of skew highway bridges is performed using nonlinear time history analysis procedure and the AASHTO design approach. Through comparison of the two approaches, the deficiency of the current AASHTO approach is identified.; During an earthquake, both horizontal and vertical ground motions are imparted to the bridge structure. The effects of both these earthquake components are studied. The results show that the vertical earthquake component affects the column axial force noticeably, but its effect on shear and moment is only secondary.; To validate the theoretical and numerical analyses, an experimental study on a model skew bridge is carried out. Tests for static displacements, natural frequencies, mode shapes and damping of the model bridge are conducted. Good correlation is obtained for the theoretical and experimental results.
机译:提出了斜交公路桥梁地震响应的理论和实验研究。该研究从描述短跨度斜桥的刚性桥面模型开始。开发了计算地震响应的公式,并确定了对桥梁动力响应有重大影响的参数。研究表明,给定的斜桥的响应不仅取决于其桥面纵横比,刚度偏心率,斜角及其固有频率,还取决于其频率比。对于更长跨度的斜桥,使用刚性桥面假设是有问题的。为了研究桥面柔韧性的影响,开发了有限元模型来研究具有代表性的中跨斜交钢筋混凝土箱梁桥的性能。利用响应谱分析研究了上部结构的柔性,下部结构的边界条件,结构的偏度和刚度的偏心距对桥梁地震响应的影响。提出了一种利用桥梁桥面双梁表示的精细杆模型,用于中长跨度斜桥的初步动力分析和地震评估。通过将结果与斜板和斜桥的数值解进行比较,可以建立模型的有效性。当桥梁遭受中度到强烈地震时,在初期破坏时通常会发生非弹性。斜交公路桥梁的非线性分析是使用非线性时程分析程序和AASHTO设计方法进行的。通过比较这两种方法,可以确定当前AASHTO方法的不足。在地震期间,水平和垂直地震动都作用于桥梁结构。研究了这两个地震分量的影响。结果表明,竖向地震分量对立柱的轴向力有显着影响,但对剪力和弯矩的影响仅是次要的。为了验证理论和数值分析,对模型斜桥进行了实验研究。进行了模型桥的静态位移,固有频率,振型和阻尼测试。理论和实验结果均具有良好的相关性。

著录项

  • 作者

    Meng, Junyi.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 242 p.
  • 总页数 242
  • 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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