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Electrical time domain reflectometry sensing cables as distributed stress/strain sensors in smart material systems

机译:时域反射电学感应电缆作为智能材料系统中的分布式应力/应变传感器

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Abstract: Electrical time domain reflectometry (ETDR) stress/strain sensing technique has been successfully demonstrated in geotechnical applications to detect rock deformation and longwall movement. The ETDR sensing method appears to be practical for health monitoring applications of civil engineering structures since durable sensor media can be used. To use the ETDR sensing technique for structural stress/strain measurements, the coupling mechanism between applied loads and TDR signal response of the sensors need to be understood and modeled accurately. In this paper a theoretical model capable of describing the relation between applied loads and TDR signal response of a coaxial cable was developed. The accuracy of the model was verified by comparing theoretical results with those of finite element analyses. Parametric study to investigate the effects of the physical and structural parameters of the cable was also performed using the theoretical model.!6
机译:摘要:电时域反射仪(ETDR)应力/应变传感技术已在岩土工程应用中成功证明,可检测岩石变形和长壁运动。由于可以使用耐用的传感器介质,因此ETDR传感方法对于土木工程结构的健康监测应用似乎很实用。要将ETDR传感技术用于结构应力/应变测量,需要准确理解并模拟传感器施加的载荷与TDR信号响应之间的耦合机制。在本文中,建立了一个能够描述施加的载荷与同轴电缆的TDR信号响应之间关系的理论模型。通过将理论结果与有限元分析的结果进行比较,验证了模型的准确性。还使用理论模型进行了参数研究,以研究电缆的物理和结构参数的影响!! 6

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