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Quantification of traffic and temperature effects on the fatigue safety of a reinforced-concrete bridge deck based on monitoring data

机译:根据监测数据量化交通和温度对钢筋混凝土桥面板疲劳安全性的影响

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摘要

For assessment of existing reinforced-concrete bridges, only few rules and recommendations are available, and engineers meanwhile apply design codes for new bridges to evaluate the fatigue safety of existing bridges leading to non-realistic approaches and conclusions. Design codes for new structures are often based on the worst scenarios, and they are not made to assess existing structures with specific loadings and material properties. Direct monitoring provides an important source of information about the actual structural loading and response. This article presents an integral approach to identify fatigue damage of a reinforced-concrete deck as a function of the relevant actions for fatigue using monitoring data. This includes a long-term monitoring system to measure strain and temperature in the most loaded parts, an inverse method using monitoring data to reconstruct traffic actions from the structural response, and a simulation of traffic loading and its effects using a compiler and a finite element model to estimate fatigue damage. The presented approach can be used as a base on how to monitor and analyze recorded data to evaluate the fatigue safety of existing reinforced-concrete slabs in road bridges.
机译:为了评估现有的钢筋混凝土桥梁,只有很少的规则和建议可用,并且工程师同时对新桥梁应用设计规范来评估现有桥梁的疲劳安全性,从而得出不切实际的方法和结论。新结构的设计规范通常基于最坏的情况,因此,它们并非用于评估具有特定载荷和材料特性的现有结构。直接监测提供了有关实际结构荷载和响应的重要信息来源。本文提出了一种综合方法,可根据监视数据根据疲劳的相关作用来识别钢筋混凝土甲板的疲劳损伤。这包括一个用于测量最重负荷零件中的应变和温度的长期监视系统,一种使用监视数据从结构响应中重构交通行为的逆方法,以及使用编译器和有限元模拟交通负载及其影响的方法模型来评估疲劳损伤。所提出的方法可以用作如何监视和分析记录的数据以评估公路桥梁中现有钢筋混凝土板疲劳安全性的基础。

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