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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >A Finite Element Methodology to Study Soil-Structure Interaction in High-Speed Railway Bridges
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A Finite Element Methodology to Study Soil-Structure Interaction in High-Speed Railway Bridges

机译:高速铁路桥梁土结构相互作用的有限元方法

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This paper analyzes the dynamic soil-structure interaction (SSI) of a railway bridge under the load transmitted by high-speed trains using the finite element method (FEM). In this type of bridges, the correct analysis of SSI requires proper modeling of the soil; however, this task is one of the most difficult to achieve with the FEM method. In this study, we explored the influence of SSI on the dynamic properties of the structure and the structure's response to high-speed train traffic using commercial finite element software with direct integration and modal superposition methods. High-speed trains are characterized by the high-speed load model (HSLM) in the Eurocode. We performed sensitivity analyses of the influence of several parameters on the model, such as the size and stiffness of the discretized soil, mesh size, and the influence of the dynamic behavior of the excitation. Based on the results, we make some important and reliable recommendations for building an efficient and simple model that includes SSI. We conducted a dynamic analysis of a full model of a general multispan bridge including the piers, abutments, and soil and identified the impact factors that affected the design of the bridge. The analysis revealed that the methodology we propose allows for a more accurate determination of the dynamic effects of the passage of a train over the bridge, compared to the simpler and more widely used analysis of a directly supported isolated deck, which tends to overestimate the impact factors.
机译:本文分析了使用有限元法(FEM)通过高速列车传输的负载下的铁路桥的动态土壤 - 结构相互作用(SSI)。在这种类型的桥梁中,SSI的正确分析需要适当的土壤建模;但是,这项任务是用FEM方法实现最困难的。在这项研究中,我们探讨了SSI对结构的动态特性以及使用商业有限元软件具有直接集成和模态叠加方法对高速列车流量的影响的影响。高速列车的特点是Eurocode中的高速负载模型(HSLM)。我们对模型上的几个参数的影响进行了敏感性分析,例如离散的土壤,网格尺寸的尺寸和刚度,以及激发动态行为的影响。根据结果​​,我们对构建包括SSI的高效和简单模型进行了一些重要和可靠的建议。我们对包括码头,基台和土壤的一般多人桥梁全模型进行了动态分析,并确定了影响桥梁设计的影响因素。该分析显示,与直接支持的孤立甲板的更简单和更广泛使用的分析相比,我们提出的方法允许更准确地确定火车通过桥梁通过的动态效果。因素。

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