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Probabilistic reliability framework for assessment of concrete fatigue of existing RC bridge deck slabs using data from monitoring

机译:使用监控数据评估现有RC桥面板混凝土疲劳的概率可靠性框架

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Assessment of existing bridge structures for inherent safety level or for lifetime extension purposes is often more challenging than designing new ones. With increasing magnitude and frequency of axle loads, reinforced concrete bridge decks are susceptible to fatigue failure for which they have not been initially designed. Fatigue verification and prediction of remaining service duration may turn out to be critical for civil infrastructure satisfying the required reliability. These structures are exposed to stochastic loading (e.g. vehicle loads, temperature loads); on the resistance side, reinforced concrete also behaves in a stochastic way. This paper presents a probabilistic reliability framework for assessment of future service duration, which includes probabilistic modelling of actions based on large monitoring data and probabilistic modelling of fatigue resistance based on test data. A case study for the steel - reinforced concrete slab of the Cret de l'Anneau Viaduct is presented along with calibration of resistance partial safety factors for lifetime extension.
机译:评估现有桥梁结构的固有安全水平或延长其使用寿命通常比设计新桥梁更具挑战性。随着轴载荷的大小和频率的增加,钢筋混凝土桥面板容易遭受疲劳破坏,而这种疲劳破坏最初并未设计出来。疲劳验证和剩余服务持续时间的预测可能对于满足所需可靠性的民用基础设施至关重要。这些结构承受随机载荷(例如车辆载荷,温度载荷);在阻力方面,钢筋混凝土也表现出随机性。本文提出了一种用于评估未来服务期限的概率可靠性框架,该框架包括基于大型监视数据的动作概率建模和基于测试数据的疲劳强度概率建模。介绍了Cret de l'Anneau高架桥的钢筋混凝土板的案例研究,以及用于延长使用寿命的电阻部分安全系数的校准。

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