Finite Element Modeling of Pavement and State Awareness Using Fiber Optic Sensing

有限元法 应变计 粘弹性 耐久性 结构工程 结构健康监测 波形 计算机科学 非线性系统 工程类 材料科学 电信 数据库 物理 复合材料 量子力学 雷达
作者
Celso T. do Cabo,Zhu Mao,Yi Chen,Yangmin Ding,Ming-Fang Huang
出处
期刊:IFAC-PapersOnLine [Elsevier]
卷期号:55 (27): 236-240
标识
DOI:10.1016/j.ifacol.2022.10.518
摘要

A variety of efforts have been put into sensing and modeling of pavements. Such capability is commonly validated with experimental data and used as reference for damage detection and other structural changes. Finite element models (FEM) often provides a high fidelity physics-base benchmark to evaluate the pavement integrity. On the monitoring of roads and pavements in general, FEM combining with in-situ data largely extends the awareness of the pavement condition, and enhances the durability and sustainability for the transportation infrastructures. Although many studies were performed in order to simulate static stress and strain in the pavement, FEM also show potential for dynamic analysis, allowing to extract both frequency response and wave propagation at any location, including the behavior of the soil on the surroundings. Fiber optical sensing is adopted in this research, which outperforms the traditional sensing techniques, such as accelerometers or strain gauges, given its nature of providing continuous measurement in a relatively less intrinsic fashion. Moreover, the data is adopted to validate and calibrate the FEM with complex material properties, such as damping and viscoelasticity of the pavement as well as other nonlinear behavior of the surrounded soil. The results demonstrate a successful FEM with good accuracy of the waveform prediction.

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