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Reference-Free Dynamic Distributed Monitoring of Damage in Multispan Bridges

机译:无参考动态分布式监测多板桥梁损坏

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The work presented pertains to the development and application of a damage detection method in bridges by use of distributed fiber-optic sensors. It utilizes the dynamic mode of the Brillouin optical time-domain analysis technique to measure distributed strains and to detect the locations of damage along the entire lengths of bridges. Unlike the current state of practice with distributed sensors, application of the proposed method does not require reference measurements. The practical ramifications of reference-free monitoring of bridges is sig-nificant because it eliminates the need for bridge closures. The method described in this article is applicable only when distributed sensors with dynamic measurement capabilities are employed. Two general approaches were considered and tested on two different bridges. Formulation of the method based on calibrated load tests led to a normalized crack index along the entire length of the bridge. The second approach corresponded to formulation of strain differentials and detection of damage under random traffic loads. Analysis of the results by the proposed methods and verification by visual inspections indicated that they were efficient in detecting the majority of anomalies in the bridges. DOI: 10.1061/(ASCE)ST.1943-541X.0002858. (c) 2020 American Society of Civil Engineers.
机译:通过使用分布式光纤传感器,所提出的工作涉及桥梁中损坏检测方法的开发和应用。它利用布里渊光学时域分析技术的动态模式来测量分布式菌株,并检测沿整个桥梁长度的损坏位置。与具有分布式传感器的当前实践状态不同,所提出的方法的应用不需要参考测量。桥梁的可直接监测的实际后果是SIG-Gant,因为它消除了对桥接封闭的需求。本文中描述的方法仅适用于采用动态测量功能的分布式传感器时适用。考虑两种一般方法并在两个不同的桥上测试。基于校准负载测试的方法的制定导致沿桥的整个长度的归一化裂缝指数。第二种方法对应于应变差异的配方和随机交通负荷下的损坏。通过视觉检查的提出方法和验证的结果分析,表明它们有效地检测桥梁中的大部分异常。 DOI:10.1061 /(asce)st.1943-541x.0002858。 (c)2020年美国土木工程师协会。

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