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Optimum maintenance of deteriorated steel bridges using corrosion resistant steel based on system reliability and life-cycle cost

机译:基于系统可靠性和生命周期成本,使用耐腐蚀钢化钢结构的最佳维护

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Corrosion is a major deterioration mechanism of carbon steel bridges. Multiple maintenance actions have been proposed to meet the safety requirements for bridges subjected to corrosion, including preventive maintenance, such as repainting, and essential maintenance, such as girder replacement. Recently, corrosion-resistant steel has been adopted for bridge construction. However, a comprehensive comparison of different maintenance strategies is still an under-investigated research area, especially for the cost-effectiveness of using corrosion resistant steel to conduct essential maintenance. In this paper, a new type of corrosion-resistant steel, A709-50CR, is considered for girder replacement. Reliability- and risk-based bi-objective optimizations are conducted on a multi-girder carbon steel bridge to determine when and which carbon steel girders should be replaced under different target performance indicators. The objectives are to minimize the life-cycle failure probability/risk and the total life-cycle cost, including initial construction cost and life-cycle maintenance cost. Sensitivity analysis is performed on multiple factors associated with system reliability calculations, such as system models adopted and correlations among resistances of girders. The economic benefits of building an A709-50CR bridge and applying frequent repainting actions on a carbon steel bridge to avoid girder replacement are also investigated. The comparison of different construction and maintenance strategies for multi-girder steel bridges sheds light on their effectiveness.
机译:腐蚀是碳钢桥的主要劣化机理。已经提出了多种维护行动,以满足经过腐蚀的桥梁的安全要求,包括预防性维护,如重新绘制和基本维护,如梁替代。最近,已采用耐腐蚀钢进行桥梁施工。然而,不同维护策略的全面比较仍是一个受调查的研究领域,特别是对于使用耐腐蚀性进行必要维护的成本效益。本文考虑了一种新型的耐腐蚀钢,A709-50CR,用于雷德替代品。在多梁碳钢桥上进行可靠性和基于风险的双目标优化,以确定应在不同的目标性能指标下更换何时何种碳钢梁。目标是最大限度地减少生命周期失效概率/风险和总生命周期成本,包括初始施工成本和生命周期维护成本。对与系统可靠性计算相关的多个因素进行敏感性分析,例如在梁电阻的电阻中采用和相关性的系统模型。还研究了建设A709-50CR桥梁的经济效益,施加频繁重新绘制碳钢桥以避免梁替代的贡献。多梁钢结构不同建筑和维护策略的比较揭示了效果。

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