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Post-repair effect of column jackets on aftershock fragilities of damaged RC bridges subjected to successive earthquakes

机译:列套的后修复对遭受连续地震的受损RC桥梁的余震脆弱性的影响

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摘要

In light of recent earthquakes, structures damaged during an initial seismic event (mainshock) may be more vulnerable to severe damage and collapse during a subsequent event (aftershock). In this paper, a framework for the development of aftershock fragilities is presented; these aftershock fragilities define the likelihood that a bridge damaged during an initial event will exhibit a given damage state following one or more subsequent events. The framework is capable of (i) quantifying the cumulative damage of unrepaired bridges subjected to mainshock-aftershock sequences (effect of multiple earthquakes) and (ii) evaluating the effectiveness of column repair schemes such as steel and fiber-reinforced-polymer jackets (post-repair effect of jackets). To achieve this aim, the numerical model of repaired columns is validated using existing experimental results. A non-seismically designed bridge is chosen as a case study and is modeled for three numerical bridge models: a damaged (but unrepaired) bridge model, and two bridge models with columns repaired with steel and fiber-reinforced polymer jackets. A series of back-to-back dynamic analyses under successive earthquakes are performed for each level of existing damage. Using simulated results, failure probabilities of components for multiple limit states are computed for each bridge model and then are used to evaluate the relative vulnerability of components associated with cumulative damage and column repair. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:鉴于最近发生的地震,在初始地震事件(主震)中受损的结构可能更容易受到严重破坏,并在随后的事件(余震)中坍塌。本文提出了余震脆弱性发展的框架。这些余震脆弱性定义了在一个或多个后续事件之后,在初始事件期间损坏的桥梁将呈现给定损坏状态的可能性。该框架能够(i)量化遭受主震-余震序列(多次地震的影响)的未修复桥梁的累积损坏(ii)评估诸如钢和纤维增强聚合物护套等柱修复方案的有效性(后-夹克的修复效果)。为了达到这个目的,使用现有的实验结果验证了修复柱的数值模型。选择非抗震设计的桥梁作为案例研究,并针对三个数值桥梁模型进行建模:受损(但未修复)的桥梁模型,以及两个带有钢和纤维增强聚合物护套修复柱的桥梁模型。对于每个级别的现有破坏,都进行了一系列连续地震下的连续动态分析。使用模拟结果,针对每个桥梁模型计算多个极限状态的组件的失效概率,然后将其用于评估与累积损坏和柱修复相关的组件的相对脆弱性。版权所有(c)2016 John Wiley&Sons,Ltd.

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