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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Field Monitoring and Numerical Analysis of Large-Span Three-Sided Reinforced Concrete Culvert
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Field Monitoring and Numerical Analysis of Large-Span Three-Sided Reinforced Concrete Culvert

机译:大跨度三面钢筋混凝土涵洞现场监测与数值分析

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This paper investigates the structural behavior and soil-structure interaction mechanism of a three-sided culvert (TSC) at service and ultimate load levels. Field measurements were used to verify a two-dimensional (2D) finite-element model (FEM) and evaluate the backfill height at which the TSC would fail. In addition, experimental data available in the literature of an arched TSC segment loaded to failure was adopted to verify a three-dimensional (3D) FEM for the analysis at the ultimate limit state (ULS). The results demonstrated that the Canadian Highway Bridge Design Code overestimates the earth pressures on the top slab. It was also found that the connection at the sidewall base does not behave as a perfect hinge. Finally, the nonlinearity of the reinforced concrete (RC) was evaluated throughout the loading spectrum and it was concluded that simplifying the behavior of RC using a linear-elastic model is only adequate at the service load levels.
机译:本文研究了三面涵洞(TSC)在服务和最终负载水平的结构行为和土壤结构相互作用机制。场测量用于验证二维(2D)有限元模型(FEM),并评估TSC将失效的回填高度。此外,采用加载到故障的拱型TSC段的文献中提供的实验数据来验证在最终限制状态(ULS)处的分析的三维(3D)有限元。结果表明,加拿大公路桥梁设计代码高估了顶板上的地球压力。还发现侧壁基座的连接不表现为完美的铰链。最后,在整个装载谱中评估钢筋混凝土(RC)的非线性,得出结论,使用线性弹性模型简化RC的行为仅适用于服务负载水平。

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