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Girder Load Distribution for Seismic Design of Integral Bridges

机译:整体桥梁抗震设计的梁荷载分布

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Current seismic design practice related to integral bridge girder-to-cap beam connections allows little or no lateral seismic load to be distributed beyond the girders immediately adjacent to the column. However, distribution results from several large-scale tests have shown that the distribution of column seismic moment typically engages all the girders. An approach utilizing simple stiffness models to predict distribution in integral bridge structures is presented in detail; distribution predictions based on grillage analyses also are compared. The experimental results and the analytical results from the stiffness and grillage models show that current design methods related to vertical load distribution are sufficiently accurate. However, when applied to the distribution of lateral load, similarly obtained results reveal that current design practice does not appropriately account for the amount of load that is distributed beyond the girders adjacent to the column to the nonadjacent girders. The current practice leads to excessive girder-to-cap connection reinforcement, increased girder depth, unnecessarily high seismic mass, and increased construction cost. Finally, this paper makes recommendations for more appropriate distribution of seismic lateral load in integral bridge superstructures.
机译:当前与整体桥梁到盖梁连接有关的地震设计实践允许很少或没有横向地震载荷分布到紧邻柱的梁上。但是,一些大型试验的分布结果表明,柱地震矩的分布通常会与所有大梁接合。详细介绍了一种利用简单刚度模型预测整体桥梁结构中的分布的方法。还比较了基于格栅分析的分布预测。刚度和格栅模型的实验结果和分析结果表明,当前与垂直载荷分布有关的设计方法足够准确。但是,当应用于横向荷载的分布时,类似地获得的结果表明,当前的设计实践并未适当考虑分配到与柱相邻的桁架之外的非相邻桁架的荷载量。当前的做法导致梁到盖之间的连接加强过多,梁深度增加,不必要的高地震质量以及增加的建造成本。最后,本文提出了在整体桥梁上部结构中更适当地分配地震横向荷载的建议。

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