量化铁路车辆机械故障对轨道退化的影响(英文)
发布时间:2020-12-12 00:27
目的:了解和量化铁路车辆机械故障对铁路基础设施退化的影响有利于提高列车安全性,合理制定维护策略,以及优化轨道收费模型。本研究为欧洲Shift2Rail-Assets4rail项目的一部分(报告以非公开的形式被递交),旨在量化铁路车辆机械故障对轨道退化的影响,为调整现有的轨道收费模型提供合理的建议。创新点:1.分析一个常见的铁路车辆机械故障(擦伤)对四个用于轨道收费模型的量化指标的影响;2.引入金代理模型方法以减少仿真次数。方法:1.建立一个带有擦伤的机车多体动力学模型,并考虑车轮和轨道的柔性;2.引入金代理模型以量化车辆速度和擦伤尺寸对四种损坏机制(轨道沉降、轨道构件疲劳、钢轨磨耗和钢轨滚动接触疲劳)的影响。结论:1.轨道沉降、轨道构件疲劳和钢轨磨耗随着擦伤尺寸和车速的增加而急剧增加,并且这种增加趋势随着擦伤尺寸和车速的增加而变得更加尖锐。2.在低速时,滚动接触疲劳随着擦伤尺寸的增加而逐渐增加;在高速时,它首先急剧增加,然后逐渐减小。3.擦伤对轨道构件疲劳和钢轨磨耗的影响最为显著,其次是轨道沉降和滚动接触疲劳。
【文章来源】:Journal of Zhejiang University-Science A(Applied Physics & Engineering). 2020年10期 第783-798页
【文章页数】:16 页
【文章目录】:
1 Introduction
1.1 Quantification of track deterioration
(1) Track charging model
(2) Track friendliness evaluation model
1.2 Rolling stock failures (RSFs)
1.3 Motivation
1.4 Quantification method
1.4.1 Quantification indexes
1.4.2 Surrogate modeling
2 Locomotive/track coupled dynamics model
2.1 Locomotive model
2.2 Wheelset-track model
2.3 Wheel flat model
3 Methodology
3.1 Track deterioration model
3.1.1 Track settlement (TS)
3.1.2 Track component fatigue (TCF)
3.1.3 Abrasive wear (AW)
3.1.4 Rolling contact fatigue (RCF)
3.2 Kriging surrogate model (KSM)
3.3 Technique route
4 Simulation results
4.1 Quantification indicators
4.2 Simulation results
5 Conclusions and discussion
Replication of results
Contributors
Conflict of interest
Open access
Appendix A
Appendix B
本文编号:2911504
【文章来源】:Journal of Zhejiang University-Science A(Applied Physics & Engineering). 2020年10期 第783-798页
【文章页数】:16 页
【文章目录】:
1 Introduction
1.1 Quantification of track deterioration
(1) Track charging model
(2) Track friendliness evaluation model
1.2 Rolling stock failures (RSFs)
1.3 Motivation
1.4 Quantification method
1.4.1 Quantification indexes
1.4.2 Surrogate modeling
2 Locomotive/track coupled dynamics model
2.1 Locomotive model
2.2 Wheelset-track model
2.3 Wheel flat model
3 Methodology
3.1 Track deterioration model
3.1.1 Track settlement (TS)
3.1.2 Track component fatigue (TCF)
3.1.3 Abrasive wear (AW)
3.1.4 Rolling contact fatigue (RCF)
3.2 Kriging surrogate model (KSM)
3.3 Technique route
4 Simulation results
4.1 Quantification indicators
4.2 Simulation results
5 Conclusions and discussion
Replication of results
Contributors
Conflict of interest
Open access
Appendix A
Appendix B
本文编号:2911504
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