College of Civil Engineering, Fuzhou University, Fuzhou 350108, China.
College of Architecture, Fuzhou University, Fuzhou 350108, China.
Sensors (Basel). 2018 Jun 19;18(6):1968. doi: 10.3390/s18061968.
The Fiber Bragg Grating (FBG) sensing technique is suitable for a wide variety of measurements, including temperature, pressure, acceleration, liquid level, etc., and has been applied to many bridges and buildings in the past two decades. The fact that the FBG technique can only monitor and measure strain data for most cases when it is used for deformation measurements impedes application of the FBG sensing technique in civil infrastructures. This paper proposes FBG sensing-based deformation monitoring methods that are applicable to monitoring beam deflection, column inclination angle and mortise-tenon joint dislocation for Chinese traditional timber structures. On the basis of improved conjugated beam theory and geometrical trigonometric function relationship, the relationships between the FBG sensing strain values and the deflection of beam, inclination angle of column, as well as the amount of dislocation of mortise-tenon joint are deducted for Chinese traditional buildings. A series of experiments were conducted to verify the applicability and effectiveness of the proposed deformation monitoring methods. The results show that a good agreement is obtained between the values given by the methods proposed in this paper and other methods. This implies that the proposed deformation monitoring methods are applicable and effective in the health monitoring of Chinese traditional timber structures.
光纤布拉格光栅(FBG)传感技术适用于各种测量,包括温度、压力、加速度、液位等,在过去二十年中已应用于许多桥梁和建筑物。事实是,在用于变形测量的情况下,FBG 技术只能监测和测量大多数情况下的应变数据,这阻碍了 FBG 传感技术在民用基础设施中的应用。本文提出了基于 FBG 传感的变形监测方法,适用于监测中国传统木结构的梁挠度、柱倾斜角度和榫卯节点错位。基于改进的共轭梁理论和几何三角函数关系,推导出了 FBG 传感应变值与梁挠度、柱倾斜角度以及榫卯节点错位量之间的关系,用于中国传统建筑。进行了一系列实验以验证所提出的变形监测方法的适用性和有效性。结果表明,本文提出的方法给出的值与其他方法非常吻合。这意味着所提出的变形监测方法在对中国传统木结构的健康监测中是适用和有效的。