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Distributed Deformation Monitoring for a Single-Cell Box Girder Based on Distributed Long-Gage Fiber Bragg Grating Sensors

机译:基于分布式长距离光纤布拉格光栅传感器的单格箱梁分布式变形监测

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摘要

Distributed deformation based on fiber Bragg grating sensors or other kinds of strain sensors can be used to monitor bridges during operation. However, most research on distributed deformation monitoring has focused on solid rectangular beams rather than box girders—a kind of typical hollow beam widely employed in actual bridges. The deformation of a single-cell box girder contains bending deflection and also two additional deformations respectively caused by shear lag and shearing action. This paper revises the improved conjugated beam method (ICBM) based on the long-gage fiber Bragg grating (LFBG) sensors to satisfy the requirements for monitoring the two additional deformations in a single-cell box girder. This paper also proposes a suitable LFBG sensor placement in a box girder to overcome the influence of strain fluctuation on the flange caused by the shear lag effect. Results from numerical simulations show that the theoretical monitoring errors of the revised ICBM are typically 0.3–1.5%, and the maximum error is 2.4%. A loading experiment for a single-cell box gilder monitored by LFBG sensors shows that most of the practical monitoring errors are 6–8% and the maximum error is 11%.
机译:基于光纤布拉格光栅传感器或其他类型的应变传感器的分布式变形可用于在操作过程中监视桥梁。但是,大多数有关分布式变形监测的研究都集中在实心矩形梁而不是箱形梁上,而箱形梁是在实际桥梁中广泛使用的典型空心梁。单格箱形梁的变形既包含弯曲挠度,又包括剪切滞后和剪切作用分别引起的两个附加变形。本文对基于长距离光纤布拉格光栅(LFBG)传感器的改进的共轭波束法(ICBM)进行了修改,以满足监视单单元箱形梁中两个附加变形的要求。本文还提出了一种合适的LFBG传感器放置在箱形梁中的方法,以克服由于剪力滞后效应而引起的应变波动对翼缘的影响。数值模拟结果表明,修订后的洲际导弹的理论监测误差通常为0.3%至1.5%,最大误差为2.4%。通过LFBG传感器监视的单细胞箱式烫金机的加载实验表明,大多数实际监视误差为6–8%,最大误差为11%。

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