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    • 摘要: 工程结构变形分布可以评估桥梁结构的健康状态,然而传统采用的“点式”传感技术在获取整体结构变形分布方面存在明显不足。基于准分布式光纤光栅应变测量技术,提出一种适用于监测简支钢箱梁结构变形分布的曲率识别挠曲线法。理论探讨光纤光栅应变-曲率-挠度的曲线反演原理,通过简支箱梁四点弯曲试验数值模拟,结果表明,基于曲率识别挠度的方法具有较高的精度,且跨中相对误差仅为2.14%。将不锈钢管封装的光纤光栅应变传感器布置在2 m跨度的简支钢箱梁表面,得到结构变形分布与应变分布之间具有良好的线性相关性,并且反演的挠度和百分表跨中最大相对误差小于3.80%,为箱梁分布式长期的变形监测提供参考方案。

       

      Abstract: The deformation distribution of engineering structures can evaluate the health status of the bridge structures, but the traditional "point based" sensing technology has significant shortcomings in obtaining the overall structural deformation distribution. This article proposes a curvature identification deflection curve method suitable for monitoring the deformation distribution of simply supported steel box girder structure based on quasi distributed fiber Bragg grating strain measurement technology. Theoretical exploration of the principle of strain curvature deflection curve inversion for fiber Bragg gratings. Numerical simulations of four point bending tests on simply supported box girders show that the method based on curvature identification of deflection has high accuracy, and the relative error at the mid span is only 2.14%. The fiber optic grating strain sensor encapsulated in a stainless steel tube was arranged on the surface of a simply supported steel box girder with a span of 2 meters, and a good linear correlation was obtained between the structural deformation distribution and strain distribution. The maximum relative error between the inverted deflection and the dial gauge at the mid span was less than 3.80%, providing a reference scheme for the long-term deformation monitoring of box girders with distributed distribution.