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高速交通轨道梁高精度光纤变形监测
引用本文:张颜,李素贞,张弛,陈圣杰,孙伟杰.高速交通轨道梁高精度光纤变形监测[J].浙江大学学报(自然科学版 ),2018,52(2):325-332.
作者姓名:张颜  李素贞  张弛  陈圣杰  孙伟杰
作者单位:同济大学 建筑工程系, 上海 200092
基金项目:“十二五”国家科技支撑计划重大资助项目(2013BAG19B00-02-04).
摘    要:为了分析长标距光纤光栅(FBG)在轨道梁变形监测中的可靠性问题,建立共轭梁法计算模型,分析跨中挠度的模型误差.引入测量误差,得到不同FBG标距、不同测量误差下长标距FBG的变形监测精度.通过某高速轨道梁的现场测试实验,对长标距FBG的可靠性进行验证,提出2种传感器优化布置方案.结果表明,当布置的传感器数量大于8时,监测结果的误差控制在1%以内,考虑20%的测量误差,监测结果的误差可以控制在10%以内;现场实测的挠度与理论值的相对误差为2.01%,由此说明长标距FBG可以实现对高速交通轨道梁的高精度变形监测.


High-precision deformation monitoring for track girders in rapid rail transit
ZHANG Yan,LI Su-zhen,ZHANG Chi,CHEN Sheng-jie,SUN Wei-jie.High-precision deformation monitoring for track girders in rapid rail transit[J].Journal of Zhejiang University(Engineering Science),2018,52(2):325-332.
Authors:ZHANG Yan  LI Su-zhen  ZHANG Chi  CHEN Sheng-jie  SUN Wei-jie
Abstract:A conjugate beam model was constructed to analyze the theoretical error of mid-span deflection in order to analyze the reliability of the long-gage fiber Bragg grating(FBG)in the deformation monitoring for track girders. Then the measurement error was considered to establish the precision of the long-gage FBG sensors for deformation measurement considering different gage length and measurement error. A field testing on a track girder was conducted to verify the reliability of the long-gage FBG and two optimization programs for the sensor layout was proposed. The identification error can be controlled within 1% when the number of sensor is over 8 and the value becomes 10% considering 20% measurement error. The relative error between the test result and the theoretical value is 2.01%, which indicates that the long-gauge FBG can achieve high precision deformation monitoring for track girders in rapid rail transit.
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