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Assessment and modeling of embankment participation in the seismic response of integral abutment bridges

机译:路堤参与整体式桥台地震反应的评估和建模

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The dynamic response and seismic performance of bridges may be appreciably affected by numerous contributing factors, with soil–structure interaction being the dominant exogenous influence. The most familiar form is the so-called soil–pile interaction, but embankment–abutment interaction is also documented through field observations and analytical investigations, particularly evident in integral R.C. bridges. Recent studies have shown that this form of interaction may significantly alter the bridge response and should be taken into account during design and assessment, especially in the case of typical highway overcrossings that have abutments supported on earth embankments. In light of this emerging problem and in order to facilitate quantitative estimates of the interaction effects, the question of appropriate modeling and seismic assessment of R.C. integral bridges is the main object of the present paper. Based on already established procedures to account for soil–structure interaction, a new approach is proposed to model the contribution of the embankment, the bent and the abutments to the overall bridge response. Furthermore, the capacity curve of the entire bridge system is evaluated through the implementation of Incremental Dynamic Analysis (IDA), therefore allowing for seismic assessment of the complex superstructure–foundation system with well established displacement based procedures. Using as a benchmark case two typical instrumented U.S. highway bridges located in California, the proposed method is implemented and provided results from this analysis are correlated successfully with available field data. Results obtained from the analysis indicate excessive displacement demands for the entire bridge–embankment system owing to the embankment contribution and the soil degradation under increasing shear strains. Furthermore, seismic performance is strongly related to the central bent deformation capacity, with soil–pile interaction effects being of critical importance.
机译:桥梁的动力响应和地震性能可能会受到众多影响因素的显着影响,其中土-结构相互作用是主要的外源影响。最熟悉的形式是所谓的土-桩相互作用,但路堤-基台之间的相互作用也通过实地观察和分析研究得到记录,特别是在完整​​的R.C中。桥梁。最近的研究表明,这种形式的相互作用可能会显着改变桥梁的响应,在设计和评估过程中应予以考虑,特别是在典型的高速公路立交桥上,桥台支撑在土堤上。鉴于这个新出现的问题,并且为了便于对相互作用的影响进行定量估计,因此需要对钢筋混凝土进行适当的建模和地震评估。整体桥是本文的主要目的。基于已经建立的解决土与结构相互作用的程序,提出了一种新方法来模拟路堤,弯头和桥台对桥梁整体响应的影响。此外,通过实施增量动力分析(IDA)评估了整个桥梁系统的承载力曲线,因此可以通过建立良好的基于​​位移的程序对复杂的上部结构-基础系统进行地震评估。以基准案例为例,使用位于加利福尼亚的两座典型的美国仪器仪表公路桥梁,实施了所提出的方法,并提供了该分析的结果与现有现场数据的成功关联。从分析中获得的结果表明,由于路堤的贡献和剪切应变增加导致的土壤退化,整个桥梁-路堤系统的位移需求过大。此外,地震性能与中心弯曲变形能力密切相关,土桩相互作用的影响至关重要。

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