Wu Bitao, Lu Huaxi, Chen Bo, Gao Zhicheng
School of Civil Engineering & Architecture, East China Jiao Tong University, Nanchang 330013, China.
Sensors (Basel). 2017 Jul 19;17(7):1657. doi: 10.3390/s17071657.
A finite model updating method that combines dynamic-static long-gauge strain responses is proposed for highway bridge static loading tests. For this method, the objective function consisting of static long-gauge stains and the first order modal macro-strain parameter (frequency) is established, wherein the local bending stiffness, density and boundary conditions of the structures are selected as the design variables. The relationship between the macro-strain and local element stiffness was studied first. It is revealed that the macro-strain is inversely proportional to the local stiffness covered by the long-gauge strain sensor. This corresponding relation is important for the modification of the local stiffness based on the macro-strain. The local and global parameters can be simultaneously updated. Then, a series of numerical simulation and experiments were conducted to verify the effectiveness of the proposed method. The results show that the static deformation, macro-strain and macro-strain modal can be predicted well by using the proposed updating model.
针对公路桥梁静载试验,提出了一种结合动静长标距应变响应的有限模型更新方法。对于该方法,建立了由静态长标距应变和一阶模态宏观应变参数(频率)组成的目标函数,其中选取结构的局部弯曲刚度、密度和边界条件作为设计变量。首先研究了宏观应变与局部单元刚度之间的关系。结果表明,宏观应变与长标距应变传感器覆盖的局部刚度成反比。这种对应关系对于基于宏观应变的局部刚度修正很重要。局部和全局参数可以同时更新。然后,进行了一系列数值模拟和试验,以验证所提方法的有效性。结果表明,利用所提更新模型能够很好地预测静态变形、宏观应变和宏观应变模态。