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A feasibility study on railway ballast damage detection utilizing measured vibration of in situ concrete sleeper

机译:利用实测混凝土枕木振动检测铁路道ast损伤的可行性研究

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Ballasted track plays an important part in railway transportation systems. Given the importance of railway safety, research work with industrial applications has been carried out. The current railway track monitoring system is comprehensive and efficient methods are available for monitoring railway level and alignment, rail gauge, and so forth. However, the detection of ballast damage still relies on visual inspection and destructive core test. Although visual inspection is useful to identify ballast damage on the surface, ballast damage under the sleepers, which is believed to be the most critical for ballasted track safety, is extremely difficult if not impossible to detect in this way. A practical on-site test that can provide additional information for inspectors or engineers to quantify the "health" status of ballast under sleepers is in great demand. The rail-sleeper-ballast system can be considered as a beam on an elastic foundation. When the ballast under a sleeper is damaged, the stiffness that it should provide to support the sleeper is reduced. As a result, the vibration characteristics of the in situ sleeper will be altered. One possible way of applying this idea to ballast damage detection is to employ a model updating approach. This paper focuses on a feasibility study on the detection of ballast damage utilizing the measured vibration of the in situ concrete sleeper by following the model updating method. This paper reports not only the theoretical development of the proposed methodology, but also the numerical and full-scale experimental verifications. The numerical and experimental verification results are very encouraging, showing that it is possible to quantify the "health" status of ballast by calculating the reduction in stiffness of the ballast under the sleeper. Some observations and discussions based on the verification results are provided at the end of the paper.
机译:道track在铁路运输系统中起着重要的作用。考虑到铁路安全的重要性,已经进行了工业应用方面的研究工作。当前的铁路轨道监控系统是全面且有效的方法,可用于监控铁路高度和路线,轨距等。但是,镇流器损坏的检测仍然依赖于外观检查和破坏性岩心测试。尽管目视检查可用于识别表面上的道damage损坏,但枕木下方的道ast损坏被认为对道ball轨道的安全性最为关键,即使不是不可能的话,也极其困难。迫切需要一种实用的现场测试,该测试可以为检查员或工程师提供更多信息,以量化卧铺下压载物的“健康”状态。轨道-轨枕-压载系统可以看作是弹性基础上的梁。当枕木下方的压载物损坏时,其应提供的支撑枕木的刚度降低。结果,原位轨枕的振动特性将被改变。将该思想应用于压载物损伤检测的一种可能方法是采用模型更新方法。本文关注通过模型更新法利用实测混凝土轨枕振动检测压载物损伤的可行性研究。本文不仅报告了所提出方法的理论发展,而且还进行了数值和全面的实验验证。数值和实验验证结果令人鼓舞,表明可以通过计算枕木下镇流器刚度的降低来量化镇流器的“健康”状态。最后,基于验证结果进行了一些观察和讨论。

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