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Performance and Health Monitoring of civil structures and infrastructure using long-gauge and distributed Fiber Optic Sensors

机译:使用长距离和分布式光纤传感器对民用建筑和基础设施进行性能和健康监控

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Construction, preservation, maintenance, and renewal of sustainable and resilient civil structures and infrastructure represent important challenges for a 21st-century society. Structural Health Monitoring (SHM) is a novel approach which can successfully assist in meeting these challenges by providing actionable, quasi-real-time information regarding structural performance and health condition. Fibre Optic Sensors (FOS) have been deployed in SHM applications since the 1990's, and besides proven long-term performance, they also offer two unprecedented sensor types for practical applications in strain-based SHM: long-gauge stain sensors and truly distributed strain sensors. These FOS enable two paradigm-changing SHM approaches, respectively: global structural monitoring and integrity monitoring. The aim of this paper is to briefly summarize physical principles of FOS, present commercially available long-gauge and distributed FOS, introduce theory behind structural monitoring and integrity monitoring enabled by FOS, and demonstrate the effectiveness of the approaches through real-life application on the Streicker Bridge.
机译:可持续,有弹性的民用建筑和基础设施的建设,保存,维护和更新是21世纪社会面临的重要挑战。结构健康监测(SHM)是一种新颖的方法,可以通过提供有关结构性能和健康状况的可操作的准实时信息来成功地协助应对这些挑战。自1990年代以来,光纤传感器(FOS)就已经在SHM应用中部署,除了已证明的长期性能外,它们还为基于应变的SHM的实际应用提供了两种前所未有的传感器类型:长规格污点传感器和真正的分布式应变传感器。这些FOS分别支持两种改变范式的SHM方法:全局结构监视和完整性监视。本文的目的是简要概述FOS的物理原理,目前市售的长规格和分布式FOS,介绍由FOS启用的结构监视和完整性监视背后的理论,并通过在FOS上的实际应用来证明这些方法的有效性。斯特雷克大桥。

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