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高速铁路桥梁结构长期结构健康监测系统

Long-Term Structural Health Monitoring System for a High-Speed Railway Bridge Structure.

作者信息

Ding You-Liang, Wang Gao-Xin, Sun Peng, Wu Lai-Yi, Yue Qing

机构信息

Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, Southeast University, Nanjing 210096, China.

Department of Civil and Environmental Engineering, Rice University, Houston, TX 77005, USA.

出版信息

ScientificWorldJournal. 2015;2015:250562. doi: 10.1155/2015/250562. Epub 2015 Sep 14.

Abstract

Nanjing Dashengguan Bridge, which serves as the shared corridor crossing Yangtze River for both Beijing-Shanghai high-speed railway and Shanghai-Wuhan-Chengdu railway, is the first 6-track high-speed railway bridge with the longest span throughout the world. In order to ensure safety and detect the performance deterioration during the long-time service of the bridge, a Structural Health Monitoring (SHM) system has been implemented on this bridge by the application of modern techniques in sensing, testing, computing, and network communication. The SHM system includes various sensors as well as corresponding data acquisition and transmission equipment for automatic data collection. Furthermore, an evaluation system of structural safety has been developed for the real-time condition assessment of this bridge. The mathematical correlation models describing the overall structural behavior of the bridge can be obtained with the support of the health monitoring system, which includes cross-correlation models for accelerations, correlation models between temperature and static strains of steel truss arch, and correlation models between temperature and longitudinal displacements of piers. Some evaluation results using the mean value control chart based on mathematical correlation models are presented in this paper to show the effectiveness of this SHM system in detecting the bridge's abnormal behaviors under the varying environmental conditions such as high-speed trains and environmental temperature.

摘要

南京大胜关大桥是京沪高速铁路和沪汉蓉铁路共用的跨长江通道,是世界上首座跨度最长的六线高速铁路桥。为确保大桥安全并检测其长期服役过程中的性能劣化情况,通过应用传感、测试、计算和网络通信等现代技术,在该桥上实施了结构健康监测(SHM)系统。SHM系统包括各种传感器以及用于自动数据采集的相应数据采集和传输设备。此外,还开发了结构安全评估系统,用于对该桥进行实时状态评估。在健康监测系统的支持下,可以获得描述桥梁整体结构行为的数学相关模型,其中包括加速度互相关模型、钢桁梁拱温度与静应变的相关模型以及桥墩温度与纵向位移的相关模型。本文给出了一些基于数学相关模型的均值控制图的评估结果,以展示该SHM系统在检测高速列车和环境温度等变化环境条件下桥梁异常行为方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05c3/4584230/c8b5450ab759/TSWJ2015-250562.001.jpg

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