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Structural monitoring of composite marine piles using multiplexed fiber Bragg grating sensors: In-field applications

机译:复合光纤布拉格光栅传感器复合船用桩的结构监测:现场应用

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The goal of this project is to obtain structural health monitoring data using optical fiber Bragg grating sensors embedded in the filament-wound composite tube of a load carrying pile. This technology has applications for structural health monitoring of bridges, piers, and other post-supported infrastructure. These sensors provide strain data for the life history of the pile including pre-installation, installation, residual strains due to the installation process, and health monitoring for the lifetime of the pile. This paper describes the embedding process for the multiplexed fiber Bragg grating sensors into a 2-ft diameter, 60-ft long composite shell including composite manufacturing lay-up, sensor orientation, and ingress/egress of the optical fiber lead from the composite shell. The paper then discusses in-field tests of the monitoring system. Results from the sensor system will provide civil engineers with a greater understanding of load transfer in the composite pile system. Long term structural monitoring of the composite piles will also be demonstrated with this technology. The purposes of these tests are to: 1) determine the survivability of the sensor arrays during a pile driving process, 2) measure strains on the filament wound composite shell following the pile driving process, and 3) determine if structural integrity issues are observed from the strain data.
机译:该项目的目标是使用嵌入在承载桩的灯丝缠绕的复合管中的光纤布拉格光栅传感器获得结构健康监测数据。该技术具有桥梁,码头和其他支持后基础设施的结构健康监测的应用。这些传感器为桩的寿命历史提供了应变数据,包括安装过程预先安装,安装,残留株,以及桩的寿命的健康监测。本文介绍了多路复用光纤布拉格光栅传感器进入2英尺直径,60英尺长的复合壳体的嵌入过程,包括复合壳体的复合制造铺设,传感器方向和光纤引线的入口/出口。然后本文讨论了监控系统的现场测试。传感器系统的结果将为复合桩系统中的负载传输提供了更大了解的土木工程师。这些技术还将对复合桩进行长期结构监测。这些测试的目的是:1)确定在打桩过程中的传感器阵列的生存能力,2)上的灯丝量度菌株缠绕以下打桩过程复合壳体,以及3)确定是否结构完整性有关的问题,从观察到的应变数据。

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