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Probabilistic Assessment of the Safety of Main Cables for Long-Span Suspension Bridges considering Corrosion Effects

机译:考虑腐蚀效应的长跨度悬架桥梁主电缆安全性的概率评估

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This paper presents a reliability analysis to assess the safety of corroded main cables of a long-span suspension bridge. A multiscale probability model was established for the resistance of the main cables considering the length effect and the Daniels effect. Corrosion effects were considered in the wire scale by relating the test results from accelerated corrosion tests to the corrosion stages and in the cable scale by adopting a corrosion stage distribution of the main cable section in NCHRP Report 534. The load effects of temperature, wind load, and traffic load were obtained by solving a finite element model with inputs from in-service monitoring data. The so-obtained reliability index of the main cables reduces significantly after operation for over 50 years and falls below the design target value due to corrosion effects on the mechanical properties of the steel wire. Multiple measures should be taken to delay the corrosion effects and ensure the safety of the main cables in the design service life.
机译:本文介绍了可靠性分析,以评估长跨度悬架桥的腐蚀主电缆的安全性。考虑长度效应和丹尼尔效应,建立了多尺度概率模型的主电缆的电阻。通过在NCHRP报告534中采用主电缆部分的腐蚀阶段分布,在电线秤中考虑了腐蚀效应。通过在NCHRP报告534中采用主电缆部分的腐蚀阶段分布,通过加速腐蚀试验和电缆量表。温度,风负荷的负荷效应并且通过求解来自服务中的输入数据的有限元模型来获得交通负荷。在操作后,主电缆的所获得的可靠性指数在运行超过50年后显着减少,并且由于对钢丝的机械性能的腐蚀效应,因此低于设计目标值。应采取多种措施来延迟腐蚀效果,并确保主电缆在设计使用寿命中的安全性。

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