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Numerical Simulation for Synergetic Deformation of Optical Fiber Sensor and Asphalt Mixture

机译:光纤传感器和沥青混合料协同变形的数值模拟

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Owing to the structural and material differences, data obtained by distributed optical fiber sensors (OFS) for asphalt pavement strain measurement lack of precision. For better understanding OFS measurement mechanism and investigating the measurement error correction, this study analyzed the synergetic deformation of OFS and asphalt mixture (AM) under load. Firstly, a three-dimensional AM single-edge notched beam (SEB) model with OFS was established and verified using the discrete element method. Secondly, the micro-crack propagation of SEB model during loading procedure was analyzed to explore the debonding behavior between OFS and AM. Thirdly, strain development of OFS and AM was investigated during fracture stage and post-fracture stage. Finally, a measurement error correction method was developed based upon the materials and test conditions in this study. Results demonstrate that debonding occurs on OFS surface when macro-crack extends across OFS position. The key to making the strain measurement accuracy is to ensure the effective bonding between OFS and AM. In addition, this study provides a framework used to develop the measurement error correction, and the research results give the theoretical foundation for data selection and error correction of asphalt pavement strain measurement and crack detection using distributed optical fiber sensors.
机译:由于结构和材料差异,通过分布式光纤传感器(OF)获得的数据,用于沥青路面应变测量测量缺乏精度。为了更好地了解测量机制并调查测量误差校正,本研究分析了负荷下的有机件和沥青混合物(AM)的协同变形。首先,使用离散元件法建立和验证具有对OFS的三维AM单边缘切口光束(SEB)模型。其次,分析了在加载程序期间SEB模型的微裂纹传播,探讨了在和AM之间的剥离行为。第三,在裂缝阶段和骨折阶段进行调查菌株和AM的应变发育。最后,基于本研究中的材料和测试条件开发了测量误差校正方法。结果表明,当宏观裂纹横跨位位置延伸时,剥离发生在表面上。使应变测量精度的关键是为了确保在和AM之间有效粘合。此外,本研究提供了一种用于开发测量误差校正的框架,研究结果为使用分布式光纤传感器进行了数据选择和沥青路面应变测量和裂纹检测的数据选择和纠错的理论基础。

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