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Evaluation of substructuring method for seismic soil-structure interaction analysis of bridges

机译:桥梁地震土-结构相互作用分析的子结构法评价

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This paper evaluates the commonly used substructuring method for analysis of bridge systems where the bridge is divided into two sub-systems: the bridge superstructure and the substructure including the pile foundations, abutments, and soil. Modeling of the soil-structure interaction (SSI) in the system Is simplified by replacing the pile foundations, abutments, and soil with sets of independent equivalent linear springs and dashpots at the base of the superstructure. The main objective of the paper is to examine how well the substructuring method simulates the seismic response of a bridge system. The baseline data required for the evaluation process is derived from analyzing a fully-coupled continuum bridge model, already validated for the instrumented two-span Meloland Road Overpass. The same bridge system is also simulated using the substructuring method. The results from both approaches are compared, and it is shown that the differences between them can be significant. The substructuring method consistently overestimates the pier base shear forces and bending moments and the pier top deflections. Moreover, the spectral response of the bridge structure is mispredicted. The analyses are repeated for a three-span bridge system subjected to several ground motions, leading to a similar observation as before. Hence, the current state of practice for simulating seismic SSI in bridges using the substructure model is shown to be too simplified to capture the major mechanisms involved in SSI. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文评估了用于分析桥梁系统的常用子结构方法,该方法将桥梁分为两个子系统:桥梁上部结构和包括桩基础,桥台和土壤在内的子结构。通过在上部结构基础上用一组独立的等效线性弹簧和减震器代替桩基,桥台和土壤,简化了系统中土壤与结构相互作用(SSI)的建模。本文的主要目的是研究子结构法模拟桥梁系统地震反应的性能。评估过程所需的基准数据来自对全耦合连续体桥梁模型的分析,该模型已针对仪表化的两跨Meloland道路立交桥进行了验证。还使用子结构方法模拟了相同的桥梁系统。比较了两种方法的结果,结果表明它们之间的差异可能很大。子结构方法始终高估了墩基的剪力和弯矩以及墩顶的挠度。此外,桥结构的光谱响应是错误预测的。对经历了几次地面运动的三跨桥梁系统重复分析,得出与以前相似的观察结果。因此,使用子结构模型来模拟桥梁地震SSI的当前实践状态显示过于简化,无法捕获SSI涉及的主要机制。 (C)2016 Elsevier Ltd.保留所有权利。

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