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System design and demonstration of performance monitoring of a butterfly-shaped arch footbridge

机译:蝴蝶形拱形行人桥的性能监测系统设计与演示

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This paper presents an overview of the structural performance monitoring system for a butterfly-shaped arch footbridge located at The Hong Kong Polytechnic University. The system is the product of a multidisciplinary academic collaboration of the pooling expertise of four academic departments, namely, structural engineering, traffic engineering, surveying, and optical communication engineering. This system consists of 88 sensors of 13 types, including an advanced Brillouin optical time-domain analysis technology, an optical fiber Bragg grating technology, a global navigation satellite system (GNSS), and high-performance video cameras. The paper summarizes the modular design, subsystem framework, and advanced features of the monitoring system. Preliminary monitoring results, such as high spatial resolution distributed temperature/strain measurement, global heat-transfer analysis, pedestrian traffic analysis, dynamic characteristics, and GNSS measurements, are introduced. A fire accident is employed to demonstrate the function and value of the monitoring system and provided a rare opportunity to detect damages in a real structure. The monitoring system not only monitors the performance of the bridge in real-time but also provides a multifunctional platform, including an Internet-based software for research and teaching and a touchscreen visualization platform for public education.
机译:本文概述了位于香港理工大学的蝴蝶形拱形桥的结构性能监测系统。该系统是多学科学术合作的汇集专业知识,即结构工程,交通工程,测量和光学通信工程。该系统由88种类型的传感器组成,包括先进的布里渊光学时域分析技术,光纤布拉格光栅技术,全球导航卫星系统(GNSS)和高性能摄像机。本文总结了监控系统的模块化设计,子系统框架和高级功能。介绍了初步监测结果,如高空间分辨率分布式温度/应变测量,全局传热分析,行人交通分析,动态特性和GNSS测量。采用火灾事故来证明监测系统的功能和价值,并提供了一种难得的机会,以检测真实结构中的损坏。监控系统不仅在实时监视桥梁的性能,还提供了一个多功能平台,包括基于互联网的研究和教学软件以及用于公共教育的触摸屏可视化平台。

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