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Reliability-based Evaluation of Load Carrying Capacity for a Composite Box Girder Bridge

机译:基于可靠性的组合箱梁桥承载能力评估

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摘要

The load carrying capacity of a composite open-top steel box girder bridge was evaluated, based on a reliability-based method, and potential differences from conventional approaches were evaluated. A practical analysis model was utilized in evaluating the Rating Factor (RF) after verification with a rigorous full finite element analysis model with solid and plate elements. The accuracy of the analysis models was validated in terms of displacements and distribution factors through static loading tests. Dynamic effects were also estimated from the dynamic loading tests. The load factors, proposed for the purpose of evaluation based on recently accumulated statistical data, were utilized in evaluating RF. The RFs were evaluated for maximum positive flexure, negative flexure, and shear regions along the bridge. The calculated RF with the load factors for evaluation purposes was higher by 35% than that with design load factors. The proposed method also produces a 29% increase in RF compared to the conventional allowable stress design approach. Consequently, the proposed reliability-based procedure would be expected to permit a more economical assessment of bridge performance to be made.
机译:基于基于可靠性的方法,评估了组合式开放式钢箱梁桥的承载能力,并评估了与传统方法的电势差。在使用具有实体和板单元的严格的完整有限元分析模型进行验证后,使用了实用的分析模型来评估额定系数(RF)。通过静态载荷测试,通过位移和分布因子验证了分析模型的准确性。动态效果也可以通过动态载荷测试来估算。基于最近积累的统计数据提出的用于评估目的的负载因子,用于评估RF。评估了RF沿桥的最大正弯曲,负弯曲和剪切区域。出于评估目的,使用负载因子计算出的RF值比使用设计负载因子计算的RF高出35%。与传统的允许应力设计方法相比,所提出的方法还使RF增加了29%。因此,所提出的基于可靠性的程序将有望对桥的性能进行更经济的评估。

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