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首页> 外文期刊>Journal of Performance of Constructed Facilities >Damage Detection and Decreased Load-Carrying Capacity Assessment of a Vertical-Lift Steel Truss Bridge
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Damage Detection and Decreased Load-Carrying Capacity Assessment of a Vertical-Lift Steel Truss Bridge

机译:垂直升降钢桁架桥的损伤检测与负载承载能力评估

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摘要

Over a bridge's service life, physical damage, such as material deterioration, accidental impact, and overloading, can decrease its load-carrying capacity. To assess the integrity and serviceability of in-service bridges, accurate and efficient structural health monitoring is required for as frequent intervals as feasible. In this study, an integrated decision-making protocol is proposed to continuously postprocess collected dynamic-response data of a bridge to notify the bridge owners of any noticeable change in the in-service condition of the structure, at system level, and to more fully understand the in situ performance of the bridge for triggering smart inspection techniques (e.g., visual inspection, modal identification methods). This is done to determine the location and severity of damage and calculate the bridge load-carrying capacity based on the given damaged component(s). The study for this protocol is an instrumented vertical-lift truss bridge subjected to four simulated damage scenarios. For both the healthy and simulated damage conditions, a verified structural model is used as a baseline to determine the structural system response for damage detection using a wavelet-based energy rate index and to investigate the bridge load-carrying capacity according to current standards for load resistance factor-rating approach due to likely damage scenarios.
机译:在桥梁的使用寿命,物理损坏,如材料恶化,意外撞击和过载,可以降低其承载能力。为了评估常用桥的完整性和可维护性,准确和高效的结构健康监测是可行的频繁间隔所需的。在这项研究中,提出了一种集成的决策协议,以连续后处理桥接的收集的动态响应数据,以通知桥梁所有者在系统级别,更全面地通知桥梁的服务中的内部服务条件的任何明显变化。了解桥梁的原位性能,用于触发智能检查技术(例如,目视检查,模态识别方法)。这是为了确定损坏的位置和严重程度,并根据给定的损坏分量计算桥接载荷容量。该协议的研究是一个仪表化的垂直升降桁架桥,经过四种模拟损伤情景。对于健康和模拟的损伤条件,经过验证的结构模型用作基线,以确定使用基于小波的能量率指数的损坏检测的结构系统响应,并根据负载的当前标准来研究桥接载荷承载能力由于可能的损坏情景,电阻因子评级方法。

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