Experimental Research on the Vibration Reduction Characteristics of the Vibration Reduction Turnout in Metro Depot
LIN Shan1, CHEN Yanming2, FENG Qingsong2
1. Guangzhou Metro Design and Research Institute Co. Ltd, Guangzhou, Guangdong 510010, China; 2. State Key Laboratory of Performance Monitoring Protecting of Rail Transit Infrastructure, East China Jiaotong University, Nanchang, Jiangxi 330013, China
Abstract:Research purposes: Metro depot has the characteristics of many turnouts and track joints, small curve radius and low train speed, and the vibration reduction design of the track structure generally refers to the main line of the subway, and the actual vibration reduction effect is not clear. In order to understand the vibration reduction effect of double-layer nonlinear fastener in turnout in metro depot, the experimental research of vibration reduction turnout in metro depot was carried out. Research conclusions:(1) The double-layer nonlinear fastener can reduce the vibration of the track bed and platform below the fastener layer, but the vibration of the rail above the fastener layer increases significantly. When the train speed is 20 km/h, the track bed and platform ground at the frog attenuate by 6.6 dB and 4.1 dB respectively, and the rail increases by 8.6 dB. (2) After using double-layer nonlinear fastener, the rail vibration increases in most frequency bands, especially in 10~20 Hz; the attenuation of track bed is obvious in 60~400 Hz; the attenuation of platform ground is mainly in 20~60 Hz, and there is a certain amplification in 5 Hz and 10 Hz. (3) The rail-bed transfer loss at the vibration reducing turnout is significantly greater than that of the ordinary turnout. When the vibration is transmitted from the rail to the track bed, the attenuation occurs in the range of 1 000 Hz, in which the attenuation is significant within 20 Hz, and the attenuation is more than 35 dB. (4) The research results in this paper can be applied to the field of vibration reduction design of railway engineering.
林珊, 陈艳明, 冯青松. 地铁车辆段减振道岔减振特性试验研究[J]. 铁道工程学报, 2023, 40(1): 21-27.
LIN Shan, CHEN Yanming, FENG Qingsong. Experimental Research on the Vibration Reduction Characteristics of the Vibration Reduction Turnout in Metro Depot. Journal of Railway Engineering Society, 2023, 40(1): 21-27.
中国城市轨道交通协会. 2020年中国内地城轨交通线路概况[Z].北京:中国城市轨道交通协会,2021.China Association of Metros. Overview of Urban Rail Transit Lines in Mainland China in 2020[Z].Beijing: China Association of Metros,2021.
[2]
Wang Ping, Wei Kai, Liang Yingchun, etc. Experimental Investigation of the Vibration-attenuating Effect of Rail Suspension Fasteners on Environment Vibration Induced by Subway[J].Journal of Vibroengineering, 2016(6):3956-3969.
[3]
Cao Zhigang, Cai Yuanqiang, Han Jie. Mitigation of Ground Vibration Generated by High-speed Trains on Saturated Poroelastic Ground with Under-sleeper Pads[J]. Journal of Transportation Engineering, 2014(1):12-22.
[4]
Alves Costa P, Calcada R, Silva Cardoso A. Ballast Mats for the Reduction of Railway Traffic Vibrations. Numerical Study[J]. Soil Dynamics and Earthquake Engineering, 2012,42:137-150.
[5]
Vogiatzis K E, Kouroussis G. Prediction and Efficient Control of Vibration Mitigation Using Floating Slabs: Practical Application at Athens Metro Lines 2 and 3[J]. International Journal of Rail Transportation, 2015(4):215-232.
[6]
Gao Liang, Zhong Yanglong, Liang Shujuan, etc. Analysis of Vibration Magnification Effect of Floating Slab Track under Vertical Bending Vibration Mode[J]. Journal of the China Railway Society, 2017(8):114-121.
[7]
王文斌,刘维宁,贾颖绚, 等.更换减振扣件前后地铁运营引起地面振动的研究[J].中国铁道科学,2010(1):87-92.Wang Wenbin, Liu Weining, Jia Yingxuan, etc. Research on the Vibration of the Ground Caused by Metro Train Operation Before and After Changing the Damping Fasteners [J]. China Railway Science, 2010(1):87-92.
[8]
韦凯,梁迎春,张攀,等.地铁浮轨式扣件减振效果的测试与分析[J].铁道工程学报,2016(5):99-104.Wei Kai, Liang Yingchun, Zhang Pan, etc. Measurement and Analysis of the Vibration-attenuating Effect of Rail Suspension Fasteners on Subway Vibration [J]. Journal of Railway Engineering Society,2016(5):99-104.