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Study on Dynamic Response Measurement of the Submarine Pipeline by Full-Term FBG Sensors

机译:全术期FBG传感器潜艇管道动态响应测量研究

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The field of structural health monitoring is concerned with accurately and reliably assessing the integrity of a given structure to reduce ownership costs, increase operational lifetime, and improve safety. In structural health monitoring systems, fiber Bragg grating (FBG) is a promising measurement technology for its superior ability of explosion proof, immunity to electromagnetic interference, and high accuracy. This paper is a study on the dynamic characteristics of fiber Bragg grating (FBG) sensors applied to a submarine pipeline, as well as an experimental investigation on a laboratory model of the pipeline. The dynamic response of a submarine pipeline under seismic excitation is a coupled vibration of liquid and solid interaction. FBG sensors and strain gauges are used to monitor the dynamic response of a submarine pipeline model under a variety of dynamic loading conditions and the maximum working frequency of an FBG strain sensor is calculated according to its dynamic strain responses. Based on the theoretical and experimental results, it can be concluded that FBG sensor is superior to strain gauge and satisfies the demand of dynamic strain measurement.
机译:结构健康监测领域涉及准确可靠地评估给定结构的完整性,以减少所有权成本,增加运营寿命,提高安全性。在结构健康监测系统中,光纤布拉格光栅(FBG)是一个有前途的测量技术,可用于其漏洞防爆,免疫力干扰和高精度。本文是对应用于潜艇管道的纤维布拉格光栅(FBG)传感器的动态特性的研究,以及对管道实验室模型的实验研究。地震激发下潜艇管道的动态响应是液体和固体相互作用的耦合振动。 FBG传感器和应变仪用于监测潜艇管道模型在各种动态负载条件下的动态响应,并且根据其动态应变响应计算FBG应变传感器的最大工作频率。基于理论和实验结果,可以得出结论,FBG传感器优于应变计,满足动态应变测量的需求。

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