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Trackwork innovation: Non-ballasted track in Taiwan

机译:Trackwork Innovation:台湾非镇流轨道

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摘要

Due to its high capacity, low energy consumption, comfort and punctuality, the railway system has become the main stream of inland transportation in the world. And now accordingly with the results of recent studies and research, it has become clear that in the future the ballast track railway system will eventually be replaced by the non-ballast track railway system. In Taiwan, the subject of mass rapid transit non-ballast track systems has been studied in the practical field for many years now. This particular study presents a simulation of actual cases of operation on a bridge of the Taipei Rapid Transit System (TRTS), and includes the measurements and analysis of in-track loading, the measurements and analysis of track system noise and vibrations, and the EMU and Direct Fixation rail Fastener (DFF) natural frequency and insert loss. The results were examined in order to establish the direct fixation rail fastener testing procedure, determine the functional requirements for setting on non-ballast trackbed, and develop a trackbed system evaluation process. In this paper, we are sharing our experiences and study results for both the design stage and operation stage. Each stage has its own unique characteristics for the designer's reference, and can help enable the designer to make revisions that will suit the actual conditions. It is our hope that this non-ballast track research will enhance the future development of non-ballast track systems.
机译:由于其高容量,低能耗,舒适性和准时性,铁路系统已成为世界内陆运输的主要流。因此,随着最近的研究和研究的结果,已经清楚地说,在未来,镇流器轨道铁路系统最终将被非镇流器轨道铁路系统取代。在台湾,现在在实际领域研究了大规模快速过境非镇流器轨道系统的主题。该特定研究介绍了台北快速传输系统(TRTS)桥梁上实际操作情况的模拟,包括轨道载荷,测量和轨道系统噪声和振动的测量和分析,以及鸸and并直接固定轨紧固件(DFF)固有频率和插入损耗。检查结果是为了建立直接固定轨紧固件测试程序,确定在非镇流器轨迹上设定的功能要求,并开发出轨迹置的系统评估过程。在本文中,我们正在分享我们的经验,并研究设计阶段和操作阶段。每个阶段都有自己独特的设计师参考特征,可以帮助设计师进行修订,以满足实际情况。我们希望这项非镇流器赛道研究将增强非镇流器轨道系统的未来发展。

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