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Health Monitoring and Fatigue Damage Assessment of Bridge-deck Sections

机译:桥面断面的健康监测和疲劳损伤评估

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摘要

Based on the real-time monitoring data, a fatigue damage model using continuous damage mechanics and a methodology and strategy for evaluating fatigue damage and possible critical locations of local fatigue on bridge-deck sections are developed. The proposed local damage model to evaluate the fatigue damage of bridge-deck sections allows fatigue damage to be considered at a continuum scale as a deteriorating process with its physical mechanism such as fatigue crack initiation and growth. Therefore the fatigue damage variable associates not only cycles of stress range on the accumulating process of fatigue, but also directly associates the state of deterioration and the mechanics behavior. The effective stress range for the variable-amplitude stress spectrum due to traffic load is used to evaluate the fatigue strength of the bridge-deck section at different locations, by which possible location of critical fatigue failure can be primarily determined. As a typical case to use the method and strategy proposed in this paper, fatigue damage assessment and the detection of possible critical location of fatigue in a deck section of the Tsing Ma Bridge are carried out by using strain-time history acquired by the bridge structural health monitoring system.
机译:基于实时监测数据,开发了一种使用连续损伤机制的疲劳损伤模型,以及一种用于评估疲劳损伤和桥面截面上局部疲劳可能的关键位置的方法和策略。拟议的评估桥面截面疲劳损伤的局部损伤模型允许将疲劳损伤以其不断恶化的过程(例如疲劳裂纹萌生和扩展)作为一个不断恶化的过程来考虑。因此,疲劳损伤变量不仅将疲劳范围累积过程中的应力范围周期关联起来,而且将劣化状态和力学行为直接关联起来。由于交通负荷而引起的可变振幅应力谱的有效应力范围用于评估桥甲板段在不同位置的疲劳强度,从而可以初步确定临界疲劳失效的可能位置。作为使用本文提出的方法和策略的典型案例,利用桥梁结构获得的应变时间历史记录,进行了青马大桥桥面断面的疲劳损伤评估和疲劳可能的临界位置的检测。健康监测系统。

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