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Numerical Modeling of High-Speed Train/Track System to Assess Track Vibrations and Settlement Prediction

机译:高速列车/轨道系统评估轨道振动和沉降预测的数值模型

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The circulation of trains at very high speeds (higher than 300 km/h) leads to important vibrations in the track and its environment. Concerning the track behavior, this dynamic cyclic loading conduces to the deterioration of its geometric quality, which progressively amplifies the vibration levels in a repeated process, leading to an increase in track lifecycle costs. Within this framework, this paper presents a dynamic numerical model that was built with this concern and was consistently validated with real experimental measurements at different maximum speeds, also above 300 km/h. The implementation in the model of long-term estimations of plastic deformations accumulations is described and highlighted. The influence of increasing train speeds in the level of vibrations reached in different types of tracks may be evaluated, as well as the track settlement evolution along the track and throughout millions of cyclic train passages. Different design alternative solutions are simulated: softening railpads, placing under-sleeper pads or ballast mats, or using bituminous subballast as an alternative to granular subballast. Critical analyses on the results obtained in the paper enable one to draw recommendations on the mitigation of track vibrations and maintenance interventions, that is, on the possible improvements to be made to ballasted high-speed track design considering its maintenance needs.
机译:列车以极高的速度(高于300 km / h)的流通会导致轨道及其周围环境发生重大振动。关于轨道行为,这种动态循环载荷导致其几何质量下降,从而在重复过程中逐渐放大振动水平,从而导致轨道生命周期成本增加。在此框架内,本文提出了一个动态数值模型,正是基于此考虑而建立的,并已通过实际实验测量在不同最大速度(也超过300 km / h)下进行了持续验证。描述并强调了塑性变形累积的长期估计模型中的实现。可以评估列车速度的提高对在不同类型的轨道中达到的振动水平的影响,以及沿轨道以及数百万个循环火车通道的轨道沉降演变。模拟了不同的设计替代解决方案:软化护垫,放置枕下垫或镇流垫,或使用沥青子镇流器代替粒状子镇流器。对本文获得的结果进行批判性分析,就可以得出有关减轻轨道振动和维护干预措施的建议,也就是就考虑到其维护需要对压载高速轨道设计进行的可能改进提出建议。

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