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On the robustness to corrosion in the life cycle assessment of an existing reinforced concrete bridge

机译:关于现有钢筋混凝土桥梁寿命评估中腐蚀的鲁棒性

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摘要

Management of existing structures has traditionally been based on condition assessment, based on visual inspections, disregarding the susceptibility of different structural types to aging and deterioration. Robustness, as a measure of the effects of unpredictable damage to structural safety can be a complementary information to the results of inspection. Although robustness has mostly been used to evaluate the consequences of extreme events, a similar framework can be used to investigate the result of aging, allowing a better understanding of the potential effects of deterioration and allowing a better allocation of available maintenance funding. In this work, a probabilistic structural robustness indicator is used to quantify the susceptibility of structures to corrosion. The methodology is exemplified through a case study comprising an existing reinforced concrete bridge deck, heavily damaged due to reinforcement corrosion, and finally demolished due to safety concerns. Robustness measures the bridge deck safety tolerance to reinforcement corrosion. The principal effects of corrosion, including loss of area and bond between concrete and steel are modelled using a non-linear finite-element model, coupled with a Response Surface Method to compute the bridge reliability as a function of the corrosion level, and finally used to assess robustness. Results show that the redundancy of the bridge allows significant redistribution of loads between elements with different corrosion levels. As a result, the bridge presents significant robustness and tolerance to reinforcement corrosion.
机译:传统上,对现有结构的管理一直基于状态评估,基于目视检查,而无视不同结构类型对老化和劣化的敏感性。坚固性,作为对结构安全性不可预测的损害的一种度量,可以作为检查结果的补充信息。尽管健壮性主要用于评估极端事件的后果,但可以使用类似的框架来调查老化的结果,从而可以更好地了解退化的潜在影响,并可以更好地分配可用的维护资金。在这项工作中,使用概率结构坚固性指标来量化结构对腐蚀的敏感性。通过一个案例研究来举例说明该方法,该案例包括一个现有的钢筋混凝土桥面板,由于钢筋腐蚀严重受损,最后由于安全问题而被拆除。坚固性衡量桥梁甲板对钢筋腐蚀的安全公差。使用非线性有限元模型对腐蚀的主要影响(包括面积损失和混凝土与钢之间的粘结)进行建模,并结合响应面法来计算桥梁可靠度与腐蚀水平的关系,最后将其使用评估健壮性。结果表明,桥梁的冗余度允许在具有不同腐蚀水平的元件之间显着重新分配载荷。结果,该桥呈现出明显的坚固性和对钢筋腐蚀的耐受性。

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