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Impact of overhang construction on girder design.

机译:悬挑结构对大梁设计的影响。

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摘要

Economical constraints on the design of bridges usually necessitate the use of as few girders as possible across the bridge width. The girders are typically uniformly spaced transversely with the deck extending past the fascia girders, thereby resulting in an overhang. While designers commonly employ rules of thumb with regard to the geometry of the overhang, these rules of thumb generally lack research justification and the actual girder behavior is not well understood.;Overhang construction often produces torsinally unbalanced loading on the girder system, which can lead to problems in steel and concrete girder bridges during construction. The main issue with concrete girder bridges is excessive lateral rotation in the fascia girder, which can cause potential problems of construction safety and maintenance. Field problems on concrete bridges have been reported in the state of Texas where the fascia girders experienced excessive rotation during construction. For steel girder bridges, the unbalanced overhang loading can lead to both local and global instability. Locally, the overhang brackets often exert a large force on the web plate that can distort the web and increase the magnitude of the plate imperfection. Global stability problems have also occurred primarily on bridge widening projects when a few girders are added to an existing bridge system. The girders in the widening are usually isolated from the existing bridge and the unbalanced load from the overhang can cause excessive twist that intensifies the global stability of the girder system.;The objective of this study was to improve the understanding of the bridge behavior due to the unbalanced loading from the overhangs and to identify critical factors affecting the girder behavior. The study was also aimed at developing simple design methodologies and design recommendations for overhang construction.;The research included field monitoring, laboratory tests, and parametric finite element analyses. The data from the field monitoring and laboratory tests were used to validate finite element models for both concrete and steel girder bridges. Based on the validated models, detailed parametric studies were conducted to investigate the effects of the unbalanced loading. Results from the parametric studies were used to identify the geometries of girder systems that are prone to problems with the overhangs as well as to provide design suggestions. In addition, a closed-form solution for lateral rotation in the fascia girder in a concrete girder bridge was derived using a rigid-body model, and was used to develop design methodology and design recommendations for overhang construction.
机译:对桥梁设计的经济限制通常要求在整个桥梁宽度上使用尽可能少的大梁。大梁通常在横向上均匀分布,并且甲板延伸经过面板大梁,从而导致悬垂。尽管设计人员通常就悬垂的几何形状使用经验法则,但这些经验法则通常缺乏研究依据,对梁的实际行为还不甚了解。;悬垂结构通常会在梁系统上产生扭转不平衡的载荷,这可能导致施工中钢和混凝土箱梁桥的问题。混凝土箱梁桥的主要问题是筋膜箱梁的横向过度旋转,这可能会引起施工安全和维护方面的潜在问题。据报道,德克萨斯州的混凝土桥梁存在现场问题,该州的面板大梁在施工过程中过度旋转。对于钢梁桥,不平衡的悬垂载荷会导致局部和整体不稳定。局部地,悬置托架通常在腹板上施加很大的力,这会使腹板变形并增加板缺陷的程度。当在现有桥梁系统中增加一些大梁时,全球稳定性问题也主要发生在桥梁扩建项目上。拓宽中的大梁通常与现有桥梁隔离,悬挑产生的不平衡载荷会引起过度扭曲,从而增强了大梁系统的整体稳定性。这项研究的目的是为了提高对桥梁性能的了解。悬垂物的不平衡载荷,并确定影响梁性能的关键因素。该研究还旨在为悬挑施工开发简单的设计方法和设计建议。研究包括现场监测,实验室测试和参数化有限元分析。来自现场监测和实验室测试的数据用于验证混凝土和钢制梁桥的有限元模型。基于已验证的模型,进行了详细的参数研究,以研究不平衡载荷的影响。参数研究的结果用于确定容易出现悬垂问题的大梁系统的几何形状,并提供设计建议。另外,使用刚体模型导出了混凝土梁桥中面板梁横向旋转的封闭形式解决方案,并用于制定悬垂施工的设计方法和设计建议。

著录项

  • 作者

    Yang, Seongyeong.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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