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Soil-structure interaction effects in analysis of seismic fragility of bridges using an intensity-based ground motion selection procedure

机译:基于强度的地面运动选择程序在桥梁地震易损性分析中的土-结构相互作用效应

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摘要

The paper focuses on the effects of Soil-Structure Interaction (SSI) in seismic fragility analysis of reinforced concrete (RC) bridges, considering the vulnerability of multiple critical components of the bridge and different modelling approaches for soil-foundation and bridge-embankment interactions. A two-step procedure, based on the introduction of springs and dashpots at the pier foundations and the abutment to account for inertial and kinematic SSI effects, is incorporated into a component-based methodology for the derivation of bridge-specific fragility curves. The proposed methodology is applied for quantifying the fragility of a typical highway overpass at both the component and system level, while the effect of alternative procedures (of varying complexity) for modelling foundation and abutment boundary conditions is critically assessed. The rigorous SSI modelling method is compared with simpler methods and the results show that consideration of SSI may only slightly affect the probability of system failure, depending on the modelling assumptions made. However, soil-structure interaction may have a notable effect on component fragility, especially for the more critical damage states. This is an observation that is commonly overlooked when assessing the structural performance at the system level and can be particularly important when component fragility is an issue, e.g. when designing a retrofit scheme. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文着眼于土-结构相互作用(SSI)在钢筋混凝土(RC)桥梁抗震性分析中的作用,考虑了桥梁的多个关键部件的脆弱性以及土壤基础和桥梁-路堤相互作用的不同建模方法。基于在墩基础上引入弹簧和减震器以及考虑到惯性和运动SSI效应的桥台的两步过程,已被引入到基于构件的方法中,以得出桥梁特定的脆性曲线。所提出的方法学可用于在组件和系统水平上量化典型公路立交桥的脆弱性,同时对用于评估基础和桥台边界条件的替代程序(具有不同复杂性)的效果​​进行评估。将严格的SSI建模方法与更简单的方法进行了比较,结果表明,根据所做的建模假设,对SSI的考虑可能仅会轻微影响系统故障的可能性。但是,土壤与结构的相互作用可能会对部件的脆性产生显着影响,尤其是对于更关键的破坏状态。这是在系统级别评估结构性能时通常被忽略的观察结果,当组件的易碎性成为问题时(例如,在设计改造方案时。 (C)2017 Elsevier Ltd.保留所有权利。

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