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首页> 外文期刊>Engineering Structures >Effect of soil-bridge interaction on the magnitude of internal forces in integral abutment bridge components due to live load effects
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Effect of soil-bridge interaction on the magnitude of internal forces in integral abutment bridge components due to live load effects

机译:活荷载作用下土桥相互作用对整体式桥台构件内力大小的影响

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摘要

In this study, the effect of soil-bridge interaction on the magnitude of the internal forces in integral abutment bridge (IAB) components due to live load effects is studied. For this purpose, structural models of typical IABs are built by including and excluding the effect of backfill and foundation soil. Analyses of the models are then conducted under an AASHTO live load. In the analyses, the effects of the backfill and foundation soil on the magnitude of the internal forces in IAB components are studied for various structural, geometric and geotechnical parameters such as bridge size, abutment height and thickness, pile size and orientation, number of spans and foundation soil stiffness.rnThe analysis results revealed that soil-bridge interaction has a significant effect on the magnitude of the live load moments in the components of IABs. Including the effect of backfill behind the abutments in the structural model is generally found to result in larger superstructure support and abutment moments and smaller superstructure span and pile moments. The difference between the live load moments for the cases with and without soil-bridge interaction effects is found to be a function of the foundation soil stiffness. However, the soil-bridge interaction is found to have only a negligible effect on live load shear in the superstructure. Furthermore, the equivalent cantilever concept used for modeling of the abutment piles is found to inconsistently yield either conservative or unconservative estimates of the internal forces in the components of IABs except for the superstructure shear.
机译:在这项研究中,研究了土桥相互作用对活荷载作用引起的整体式桥台(IAB)构件内力大小的影响。为此,通过包括和排除回填和基础土的影响来构建典型IAB的结构模型。然后在AASHTO活载下进行模型分析。在分析中,研究了各种结构,几何和岩土参数(例如桥梁尺寸,桥台高度和厚度,桩尺寸和方向,跨度数)的IAB组件中回填土和基础土对内力大小的影响。分析结果表明,土桥相互作用对IABs构件的活荷载矩大小有显着影响。通常,在结构模型中将回填的影响包括在基台之后,通常会导致较大的上层建筑支座和基台弯矩以及较小的上层建筑跨度和桩距。发现有和没有土桥相互作用影响的情况下,活荷载矩之间的差异是基础土刚度的函数。但是,发现土桥相互作用对上部结构中的活荷载剪力的影响可忽略不计。此外,发现用于桩基建模的等效悬臂梁概念不一致地得出了IAB组件内力的保守估计或非保守估计,除了上部结构剪力。

著录项

  • 来源
    《Engineering Structures》 |2010年第1期|129-145|共17页
  • 作者

    Murat Dicleli; Semih Erhan;

  • 作者单位

    Department of Engineering Sciences, Middle East Technical University. 06531 Ankara, Turkey;

    Department of Engineering Sciences, Middle East Technical University. 06531 Ankara, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    integral bridge; soil; backfill; live load;

    机译:整体桥泥;回填活载;

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