A train-mounted GPR system for fast and efficient monitoring of tunnel health conditions

Y. Zan, G. Su, Z. L. Li, X. Y. Zhang
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引用次数: 2

Abstract

The health status of a railway tunnel should be regularly inspected during its service period for safe operation. The frequency of periodic inspection should be increased when the tunnel has become aged. For the coverage tunnels, health assessment is more essential. Ground penetrating radar (GPR) has been used as a key tunnel health detecting technique; however, so far, such (GPR) techniques are in contact mode. Such methods cannot meet the requirements for tunnel disease prospection and regular inspections across the whole operational network. Therefore, a new method has been developed that uses long-range detection with the train-mounted GPR. It consists of six channels, whose air-launched antenna distance to the sidewall is about 0.93m~1.5m, and the distance to the vault is 1.7m~ 2.25m. The scanning rate of each channel is 976 scans/second. When the sampling point interval is 5cm, the maximum test speed can reach up to 175km/hr. With such a speed and air-launched antenna, this system has a big advantage over existing methods. That is, for electrified railways, there is no need for power outages and for inspections to occupy time during maintenance periods. Indeed, they will not interrupt normal railway operation. The running tests with this system have been carried out on the Baoji-Zhongwei and Xiangfan-Chongqing railway lines and very good test results have been obtained.
安装在列车上的探地雷达系统,用于快速有效地监测隧道健康状况
铁路隧道在使用期间应定期检查隧道的健康状况,保证隧道的安全运行。当隧道老化时,应增加定期检查的频率。对于覆盖隧道,健康评价更为重要。探地雷达(GPR)已成为隧道健康探测的关键技术;然而,到目前为止,这种(探地雷达)技术还处于接触模式。这种方法不能满足整个运营网络对隧道病害的预测和定期检查的要求。为此,提出了一种利用车载探地雷达进行远程探测的新方法。它由6个通道组成,其空射天线距侧壁约0.93m~1.5m,距拱顶约1.7m~ 2.25m。每个通道的扫描速率为976次/秒。当采样点间隔为5cm时,最高测试速度可达175km/hr。有了这样的速度和空中发射天线,这个系统比现有的方法有很大的优势。也就是说,对于电气化铁路来说,在维修期间不需要停电和检查时间。事实上,他们不会中断正常的铁路运营。该系统已在宝鸡-中卫、襄樊-重庆铁路上进行了运行试验,取得了良好的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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