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Reliability-based approach to the robustness of corroded reinforced concrete structures

机译:基于可靠性的锈蚀钢筋混凝土结构稳固性方法

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摘要

Currently, decisions on the maintenance and repair of infrastructural assets, structures in particular, are mostly based on the results of inspections and the resulting condition index, neglecting system robustness and therefore not making optimal use of the limited funds available. This paper presents a definition and a measure of structural robustness in the context of deteriorating structures which are compatible with asset management systems for optimal maintenance and repair planning. The proposed index is used to define the robustness of existing reinforced concrete (RC) structures to rebar corrosion. Structural performance and the corresponding reliability index are assessed using combined advanced reliability and structural analysis techniques. Structural analysis explicitly includes deterioration mechanisms resulting from corrosion, such as reinforcement area reduction, concrete cracking, and bond deterioration. The first-order reliability method, combined with a response surface algorithm, is used to compute the reliability index for a wide range of different corrosion levels, resulting in a fragility curve. Finally, structural robustness is computed and discussed based on the results obtained. A robustness comparison of different structures can then be used to determine structural types more tolerant to corrosion and these results used for planning maintenance and repairs.
机译:当前,有关基础设施资产(特别是结构)的维护和维修决策主要基于检查结果和所产生的状况指标,而忽略了系统的稳定性,因此无法充分利用有限的可用资金。本文提出了在结构恶化的情况下结构稳健性的定义和度量,这些结构与资产管理系统兼容以实现最佳维护和维修计划。拟议的指标用于定义现有钢筋混凝土(RC)结构对钢筋腐蚀的坚固性。结构性能和相应的可靠性指标使用先进的可靠性和结构分析技术相结合进行评估。结构分析明确包括腐蚀引起的劣化机制,例如钢筋减少,混凝土开裂和粘结劣化。一阶可靠性方法与响应面算法相结合,用于计算各种不同腐蚀水平下的可靠性指标,从而得出易碎性曲线。最后,基于获得的结果计算并讨论结构的稳健性。然后,可以使用不同结构的耐用性比较来确定更耐腐蚀的结构类型,并将这些结果用于计划维护和维修。

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