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Prediction of the remaining service life of existing concrete bridges in infrastructural networks based on carbonation and chloride ingress

机译:基于碳化和氯化物侵入量预测基础网络中现有混凝土桥梁的剩余使用寿命

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摘要

The second half of the 20th century was marked with a significant raise in amount of railway bridges in Austria made of reinforced concrete. Today, many of these bridges are slowly approaching the end of their envisaged service life. Current methodology of assessment and evaluation of structural condition is based on visual inspections, which, due to its subjectivity, can lead to delayed interventions, irreparable damages and additional costs. Thus, to support engineers in the process of structural evaluation and prediction of the remaining service life, the Austrian Federal Railways (OBB) commissioned the formation of a concept for an anticipatory life cycle management of engineering structures. The part concerning concrete bridges consisted of forming a bridge management system (BMS) in a form of a web-based analysis tool, known as the LeCIE_tool. Contrary to most BMSs, where prediction of a condition is based on Markovian models, in the LeCIE_tool, the time-dependent deterioration mechanisms of chloride- and carbonation-induced corrosion are used as the most common deterioration processes in transportation infrastructure. Hence, the main aim of this article is to describe the background of the introduced tool, with a discussion on exposure classes and crucial parameters of chloride ingress and carbonation models. Moreover, the article presents a verification of the generated analysis tool through service life prediction on a dozen of bridges of the Austrian railway network, as well as a case study with a more detailed description and implementation of the concept applied.
机译:20世纪下半叶,奥地利由钢筋混凝土制成的铁路桥梁的数量显着增加。今天,这些桥梁中的许多桥梁正在逐渐接近其预期使用寿命。当前评估结构状态的方法是基于目视检查,由于其主观性,可能会导致干预措施延迟,不可弥补的损失和额外费用。因此,为了在结构评估和剩余使用寿命的预测过程中为工程师提供支持,奥地利联邦铁路(OBB)委托为工程结构的预期寿命周期管理概念的形成。有关混凝土桥梁的部分包括以基于Web的分析工具(称为LeCIE_tool)的形式形成桥梁管理系统(BMS)。与大多数BMS(条件预测基于马尔可夫模型)相反,在LeCIE_tool中,氯化物和碳化引起的腐蚀随时间变化的劣化机制被用作交通基础设施中最常见的劣化过程。因此,本文的主要目的是描述引入工具的背景,并讨论氯化物进入和碳化模型的暴露类别和关键参数。此外,本文还通过对奥地利铁路网络的十几座桥梁的使用寿命进行了预测,并对生成的分析工具进行了验证,并通过案例研究对所应用的概念进行了更详细的描述和实施。

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