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An Assessment Of Modeling Strategies For Composite Curved Steel I-girder Bridges

机译:组合弯钢工字钢桥建模策略评估

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摘要

This paper investigates the qualities and limitations of a number of modeling strategies for design analysis of composite curved steel i-girder bridges. The strategies range from modified line-girder analysis to 3D finite element approaches. Several key modeling considerations, including girder web distortion, the idealization of the cross-frames, support and load height, and displacement compatibility between the girders and slab, are addressed. Approximate approaches are investigated for the capture of composite l-girder web-distortion effects when modeling the girders using open-section thin-walled beam theory. A representative full-scale composite curved I-girder bridge, tested at the Federal Highway Administration (FHWA) Turner-Fairbank Highway Research Center (TFHRC), is utilized for assessment of the different approaches. The predictions of key lateral and vertical displacements, reactions, cross-frame forces, major-axis bending stresses and flange lateral bending stresses are evaluated using the test bridge. The paper highlights a number of subtle but critical blunders that can occur in the context of the different methods. Engineers need to be aware of these pitfalls in order to avoid potential problems due to inaccurate analysis predictions. The paper closes with a discussion of the efficacy of the various approaches.
机译:本文研究了用于组合弯钢i梁桥设计分析的许多建模策略的质量和局限性。策略范围从修改的线梁分析到3D有限元方法。解决了几个关键的建模问题,包括梁腹板变形,横梁的理想化,支撑和荷载高度以及梁与板之间的位移兼容性。当使用开放式截面薄壁梁理论对梁进行建模时,研究了近似方法来捕获复合l形梁腹板扭曲效应。在联邦公路管理局(FHWA)特纳-费尔班克公路研究中心(TFHRC)进行了测试的代表性全尺寸复合弯曲工字形梁桥用于评估不同方法。使用测试桥可以评估关键的横向和垂直位移,反作用力,跨框架力,主轴弯曲应力和法兰横向弯曲应力的预测。本文重点介绍了在不同方法的情况下可能会发生的一些细微但重要的错误。工程师需要注意这些陷阱,以避免由于不正确的分析预测而引起的潜在问题。本文最后讨论了各种方法的有效性。

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