A review of research on design theory and engineering practice of high-speed railway turnout

Ping Wang, Jing-mang Xu, Shuguo Wang, Yao Qian, Rong Chen, Fei Yang, Jiasheng Fang
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Abstract

This paper systematically reviews the research progress, problems, specific countermeasures and development trends of the dynamic design theory as applied to high-speed railway turnouts. This includes wheel-rail contact solving, high-speed vehicle -turnout dynamic interaction simulation, analysis of long-term turnout performance deterioration, safety assessment of train passing through the turnout, and the maintenance and management of turnout serviceability. High-speed turnouts still face severe technical challenges with regard to their acclimation to the future development of rail transit technology. Some of these challenges include the suitability of next-generation higher-speed turnouts to a complex environment, life-cycle design, optimization of wheel-rail matching and vehicle-turnout dynamic performance, real-time status capture and performance assessment, health management and damage prediction. It is now necessary to deepen the basic theoretical study of high-speed railway turnouts, and integrate cutting-edge techniques, such as advanced materials and manufacturing, intelligence and automation, big data and cloud computing, in an effort to enhance China’s capabilities for original innovation in high-speed railway turnout technology. By analysing the present situation in a problem-orientated manner, this paper aims to provide a new perspective, as well as some basic data for academic research into technological innovations for railway engineering.
高速铁路道岔设计理论与工程实践研究综述
本文系统综述了高速铁路道岔动态设计理论的研究进展、存在的问题、具体对策和发展趋势。这包括轮轨接触求解、高速车辆与道岔动态交互仿真、道岔长期性能劣化分析、列车通过道岔的安全性评估以及道岔可使用性的维护与管理。高速路轨在适应未来轨道交通技术发展方面仍面临严峻的技术挑战。其中一些挑战包括下一代高速道岔在复杂环境中的适用性、生命周期设计、轮轨匹配和车辆道岔动态性能的优化、实时状态捕获和性能评估、健康管理和损伤预测。要深化高铁道岔基础理论研究,融合先进材料与制造、智能与自动化、大数据与云计算等前沿技术,提升高铁道岔技术原始创新能力。本文以问题为导向分析现状,旨在为铁路工程技术创新的学术研究提供一个新的视角和一些基础数据。
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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