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Seismic analysis of motorway bridges accounting for key structural components and nonlinear soil-structure interaction

机译:考虑关键结构成分和非线性土-结构相互作用的高速公路桥梁地震分析

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The paper introduces an efficient methodology to analyze the seismic performance of motorway bridges. Rigorous 3D models of a typical overpass bridge are developed and used to assess the efficiency of the proposed method. Fixed-base conditions are initially considered to focus on the effect of key structural components. The proposed simplified model is composed of a SDOF system of a pier with lateral and rotational springs and dashpots connected at the top, representing the deck and the abutment bearings. Its definition requires section analysis of the pier, and computation of spring and dashpot coefficients using simple formulas. It is shown that the lateral and rotational restraint provided by the deck and the abutment bearings is not at all negligible and should be taken into account. The simplified model is extended to account for nonlinear soil-structure interaction, replacing the soil-foundation system with horizontal, vertical, and rotational springs and dashpots. While the horizontal and vertical springs and dashpots are assumed elastic, the nonlinear rotational spring is defined on the basis of non-dimensional moment-rotation relations. The simplified model compares well with the full 3D model of the bridge-abutment-foundation-soil system, and is therefore considered a reasonable approximation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种有效的方法来分析高速公路桥梁的抗震性能。开发了典型立交桥的严格3D模型,并将其用于评估所提出方法的效率。最初认为固定基础条件着重于关键结构部件的作用。所提出的简化模型由墩的SDOF系统组成,其顶部连接有侧向弹簧和旋转弹簧以及减震器,分别代表甲板和桥台轴承。其定义要求对墩进行截面分析,并使用简单的公式计算弹簧和阻尼系数。可以看出,由甲板和支座轴承提供的侧向和旋转约束完全可以忽略不计,应予以考虑。简化模型得到扩展,以解决非线性的土壤-结构相互作用,用水平,垂直,旋转弹簧和阻尼器代替了土壤基础系统。虽然假定水平和垂直弹簧和减震器是弹性的,但非线性旋转弹簧是基于无量纲的力矩-旋转关系定义的。简化的模型与桥台-基础-土壤系统的完整3D模型具有很好的比较,因此被认为是合理的近似值。 (C)2015 Elsevier Ltd.保留所有权利。

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