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Damage detection of a cable-stayed bridge based on the variation of stay cable forces eliminating environmental temperature effects

机译:基于斜拉索力变化的斜拉桥损伤检测,消除环境温度影响

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摘要

This study aims to establish an effective methodology for the detection of instant damages occurred in cable-stayed bridges with the measurements of cable vibration and structural temperatures. A transfer coefficient for the daily temperature variation and another for the long-term temperature variation are firstly determined to eliminate the environmental temperature effects from the cable force variation. Several thresholds corresponding to different levels of exceedance probability are then obtained to decide four upper criteria and four lower criteria for damage detection. With these criteria, the monitoring data for three stay cables of Ai-Lan Bridge are analyzed and compared to verify the proposed damage detection methodology. The simulated results to consider various damage scenarios unambiguously indicate that the damages with cable force changes larger than 1% can be confidently detected. As for the required time to detect damage, it is found that the cases with 2% of cable force change can be discovered in no more than 6 hours and those with 1.5% of cable force change can be identified in at most 9 hours. This methodology is also investigated for more lightly monitored cases where only the air temperature measurement is available. Under such circumstances, the damages with cable force changes larger than 1.5% can be detected within 12 hours. Even though not exhaustively reflecting the environmental temperature effects on the cable force variation, both the effective temperature and the air temperature can be considered as valid indices to eliminate these effects at high and low monitoring costs.
机译:这项研究旨在建立一种有效的方法,通过测量电缆的振动和结构温度来检测斜拉桥中发生的即时损伤。首先确定每日温度变化的传递系数,以及长期温度变化的传递系数,以消除电缆力变化对环境温度的影响。然后获得对应于不同的超出概率水平的几个阈值,以决定用于损坏检测的四个较高标准和四个较低标准。根据这些标准,对艾兰大桥的三根斜拉索的监测数据进行了分析和比较,以验证所提出的损伤检测方法。模拟结果明确地考虑了各种损坏情况,表明可以确定地检测出缆索力变化大于1%的损坏。至于发现损坏所需的时间,发现在不超过6小时的时间内即可发现电缆力变化为2%的情况,而在最多9小时内可以发现电缆力变化为1.5%的情况。对于只有空气温度测量可用的更轻监控的情况,也对这种方法进行了研究。在这种情况下,可以在12小时内检测到电缆力变化大于1.5%的损坏。即使没有详尽地反映环境温度对电缆力变化的影响,有效温度和空气温度都可以被视为有效指标,以消除高昂和低廉的监视成本来消除这些影响。

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