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Development of a Bridge Weigh-in-Motion Sensor: Performance comparison using fibre optic and electric resistance strain sensor systems

机译:桥式动态称重传感器的开发:使用光纤和电阻应变传感器系统进行性能比较

摘要

This paper addresses the problems of effective in situ measurement of the real-time strain for bridge weigh in motion in reinforced concrete bridge structures through the use of optical fiber sensor systems. By undertaking a series of tests, coupled with dynamic loading, the performance of fiber Bragg grating-based sensor systems with various amplification techniques were investigated. In recent years, structural health monitoring (SHM) systems have been developed to monitor bridge deterioration, to assess load levels and hence extend bridge life and safety. Conventional SHM systems, based on measuring strain, can be used to improve knowledge of the bridge's capacity to resist loads but generally give no information on the causes of any increase in stresses. Therefore, it is necessary to find accurate sensors capable of capturing peak strains under dynamic load and suitable methods for attaching these strain sensors to existing and new bridge structures. Additionally, it is important to ensure accurate strain transfer between concrete and steel, adhesives layer, and strain sensor. The results show the benefits in the use of optical fiber networks under these circumstances and their ability to deliver data when conventional sensors cannot capture accurate strains and/or peak strains.
机译:本文通过使用光纤传感器系统解决了在钢筋混凝土桥梁结构中有效实时测量桥梁运动中桥梁称重的问题。通过进行一系列测试,并结合动态负载,研究了采用各种放大技术的基于光纤布拉格光栅的传感器系统的性能。近年来,已开发出结构健康监测(SHM)系统来监测桥梁的老化情况,评估荷载水平,从而延长桥梁的使用寿命和安全性。基于测量应变的常规SHM系统可用于提高对桥梁抵抗载荷能力的了解,但通常不提供有关应力增加的原因的信息。因此,有必要找到能够在动态载荷下捕获峰值应变的精确传感器以及将这些应变传感器附接到现有桥梁结构和新桥梁结构的合适方法。此外,重要的是要确保混凝土和钢材,粘合剂层和应变传感器之间的精确应变传递。结果显示了在这种情况下使用光纤网络的好处,以及当常规传感器无法捕获准确的应变和/或峰值应变时其传输数据的能力。

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