Effects of Running Speed on Coupling between Pantograph of High-Speed Train and Tunnel Based on Aerodynamics and Multi-Body Dynamics Coupling
Ji ZL(纪占玲); Guo Y(郭易); Guo DL(郭迪龙); Yang GW(杨国伟); Liu YB(刘玉标)
刊名APPLIED SCIENCES-BASEL
2021-11-01
卷号11期号:21页码:16
关键词coupling effect between pantograph and tunnel high-speed pantograph high-speed train running speed coupled aerodynamics and multi-body dynamics passing through a tunnel
DOI10.3390/app112110008
通讯作者Guo, Yi(guoyi0536@163.com)
英文摘要Featured Application:& nbsp;A coupling method between aerodynamics and multi-body dynamics is proposed. The interaction between the pantograph and its surrounding air is achieved by using the method. Its applicability is wide, which is suitable for pantograph-cantenery, car body, windshield of a high-speed train, as well as coupling analysis between aerodynamics and multi-body dynamics, aerodynamics and structural finite element in other fields.


(1) Background: The ratio of railway tunnel to line is larger, which produces tunnel entrance and exit effect, aerodynamic resistance, and sudden pressure changes. When the train passes through the tunnels at high-speed, the interaction between the pantograph on it and its surrounding air intensifies and the coupling effects between the pantograph and tunnel become more significant; (2) Methods: A coupling method between aerodynamics and multi-body dynamics is proposed based on hybrid meshing and grid motion. The layered grid motion method is combined with the viscous mesh deformation method with swift, effective data exchange. The significant coupling effects between the pantograph and tunnel are revealed; (3) Results: The influence laws and evolution mechanism of running speed as it affects important service characteristics and behaviors of the pantograph are accurately quantified. Noteworthy factors include the temporal characteristics of panhead aerodynamic lift, the contact force between the pantograph and catenary, vertical displacement and acceleration of the contact strip, the phase diagram of the contact strip, and various frequency-domain characteristics. The action mechanism of running speed on the coupling effect between the pantograph and tunnel is comprehensively and accurately revealed by the proposed method; (4) Conclusions: The larger service characteristics amplitudes of the high-speed pantograph appear at low frequencies and are not multiple frequencies of the basic frequency. By comparisons, the coupling calculation results are closer to the test results than the non-coupling results regardless of the maximum, minimum, or mean.

分类号二类
资助项目National Key Research & Development Projects[2017YFB0202801] ; National Natural Science Foundation of China[52172336] ; Strategic Priority Research Program of the Chinese Academy of Sciences[XDB22020101] ; Research Project of Chinese Academy of Sciences[XXH13506-204]
WOS关键词CATENARIES
WOS研究方向Chemistry ; Engineering ; Materials Science ; Physics
语种英语
WOS记录号WOS:000718625900001
资助机构National Key Research & Development Projects ; National Natural Science Foundation of China ; Strategic Priority Research Program of the Chinese Academy of Sciences ; Research Project of Chinese Academy of Sciences
其他责任者Guo, Yi
内容类型期刊论文
源URL[http://dspace.imech.ac.cn/handle/311007/88014]  
专题力学研究所_流固耦合系统力学重点实验室(2012-)
作者单位Chinese Acad Sci, Inst Mech, Beijing 100190, Peoples R China
推荐引用方式
GB/T 7714
Ji ZL,Guo Y,Guo DL,et al. Effects of Running Speed on Coupling between Pantograph of High-Speed Train and Tunnel Based on Aerodynamics and Multi-Body Dynamics Coupling[J]. APPLIED SCIENCES-BASEL,2021,11(21):16.
APA 纪占玲,郭易,郭迪龙,杨国伟,&刘玉标.(2021).Effects of Running Speed on Coupling between Pantograph of High-Speed Train and Tunnel Based on Aerodynamics and Multi-Body Dynamics Coupling.APPLIED SCIENCES-BASEL,11(21),16.
MLA 纪占玲,et al."Effects of Running Speed on Coupling between Pantograph of High-Speed Train and Tunnel Based on Aerodynamics and Multi-Body Dynamics Coupling".APPLIED SCIENCES-BASEL 11.21(2021):16.
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