[1] 韩健. 地铁列车-嵌入式轨道系统动力学性能及振动噪声特性研究[D]. 成都:西南交通大学,2018. HAN Jian. Study on dynamic behaviour and vib-acoustic characteristics of metro train and embessed track system[D]. Chengdu:Southwest Jiaotong University,2018. [2] 刘晓龙,韩健,徐涆文,等. 基于车内噪声的轨道衰减率限值研究[J]. 机械工程学报,2020,56(22):167-175. LIU Xiaolong,HAN Jian,XU Hanwen,et al. Study on the limiting value of the rail decay rate based on interior noise[J]. Journal of Mechanical Engineering,2020,56(22):167-175. [3] THOMPSON D J,VINCENT N. Track dynamic behaviour at high frequencies. Part 2:Experimental results and comparisons with theory[J]. Vehicle System Dynamics Supplement,1995,24:100-114. [4] 李伟,曾全君,朱士友,等. 地铁钢轨波磨对车辆和轨道动态行为的影响[J]. 交通运输工程学报,2015,15(1):34-42. LI Wei,ZENG Quanjun,ZHU Shiyou,et al. Effect of metro rail corrugation on dynamic behaviors of vehicle and track[J]. Journal of Traffic and Transportation Engineering,2015,15(1):34-42. [5] REMINGTON P J. Wheel/rail rolling noise I:Theoretical analysis[J]. Journal of the Acoustical Society of America. 1998,81(6):1805-1823. [6] REMINGTON P J. Wheel/rail rolling noise II:Validation of the theory[J]. Journal of the Acoustical Society of America,1987,81(6):1824-1832. [7] 刘卫丰,刘维宁,吴宗臻,等. 北京地铁剪切型减振器扣件钢轨波磨治理的试验研究[J]. 机械工程学报, 2015,51(21):73-79. LIU Weifeng,LIU Weining,WU Zongzhen,et al. A test of suppressing rail vibration by tuned rail damper for Beijing metro[J]. Journal of Vibration Engineering,2015,51(21):73-79. [8] 韩健,肖新标,杨刚,等. 地铁列车-嵌入式轨道系统动力学性能II:轨道参数对动力学性能影响[J]. 机械工程学报,2020,56(24):173-180. HAN Jian,XIAO Xinbiao,YANG Gang,et al. Dynamic behaviour of metro train and embedded track system II:effect of track parameters on dynamic behaviour[J]. Journal of Mechanical Engineering,2020,56(24):173-180. [9] LUDVIGH E. Elastic behaviour of continuously embedded rail systems[J]. Periodica Polytechnica Civil Engineering,2002,46(1):103-114. [10] 刘加华,练松亮. 城市轨道交通振动与噪声[J]. 交通运输工程学报,2002,2(1):29-33. LIU Jiahua,LIAN Songliang. Vibration and noise of the urban rail transit[J]. Journal of Traffic and Transportation Engineering,2002,2(1):29-33. [11] WU T,LIU H. Reducing the rail component of rolling noise by vibration absorber:Theoretical prediction[J]. Proceedings of the Institution of Mechanical Engineers,Part F:Journal of Rail and Rapid Transit,2009,223(5):473-483. [12] LIU H,WU T. The influences on railway rolling noise of a rail vibration absorber and wave reflections due to multiple wheels[J]. Proceedings of the Institution of Mechanical Engineers,Part F:Journal of Rail and Rapid Transit,2009,224:227-234. [13] 刘卫丰,张厚贵,孟磊,等. 北京地铁采用调频式钢轨减振器抑制钢轨振动的试验研究[J]. 振动工程学报,2016,29(1):105-111. LIU Weifeng,ZHANG Hougui,MENG Lei,et al. A test of suppressing rail vibration by tuned rail damper for Beijing metro[J]. Journal of Vibration Engineering,2016,29(1):105-111. [14] 孙晓静,张厚贵,刘维宁,等. 调频式钢轨阻尼器对剪切型减振器轨道动力特性的影响[J]. 振动与冲击,2016,35(14):209-214. SUN Xiaojing,ZHANG Guihou,LIU Weining,et al. Effect of tuning rail damper on dynamic properties of the track structure using egg fastening system[J]. Journal of Vibration And Shock,2016,35(14):209-214. [15] 刘晶波,谷音,杜义欣. 一致粘弹性人工边界及粘弹性边界单元[J]. 岩土工程学报,2006,28(9):1070-1075. LIU Jingbo,GU Yin,DU Yixin. Consistent viscous-spring artificial boundaries and viscous-spring boundary elements[J]. Chinese Journal of Geotechnical Engineering,2006,28(9):1070-1075. [16] 谷音,刘晶波,杜义欣. 三维一致粘弹性人工边界及等效粘弹性边界单元[J]. 工程力学,2007,24(12):31-37. GU Yin,LIU Jingbo,DU Yixin. 3D consistent viscous-spring artificial boundary and viscous-spring boundary element[J]. Engineering Mechanics,2007,24(12):31-37. [17] 金浩,周新,杨龙才. 剪切型减振器下钢轨振动衰减率及阻尼器调谐分析[J]. 同济大学学报,2019,47(2):193-260. JIN Hao,ZHOU Xin,YANG Longcai. Analysis of decay rate of rail using egg fastening and tuning mechanism of tuning rail damper[J]. Journal of Tongji University,2019,47(2):193-260. [18] MEAD D J. A general theory of harmonic wave propagation in linear periodic systems with multiple coupling[J]. Journal of Sound and Vibration,1973,27(2):235-260. [19] 黄修长,徐时吟,蒋爱华,等. 曲梁周期结构隔振器特性研究[J]. 振动与冲击,2012,31(5):171-175. HUANG Xiuchang,XU Shiyin,JIANG Aihua,et al. Dynamic properties of a periodic turved-beam structure isolator[J]. Journal of Vibration and Shock, 2012,31(5):171-175. [20] 张广朋. 弹条Ⅱ型扣件系统静力学性能研究[D]. 石家庄:石家庄铁道大学,2017. ZHANG Guangpeng. Static mechanical properties of elastic strip type II fastening system[D]. Shijiazhuang:Shijiazhuang Tiedao University,2017. [21] THOMPSON D J.Wheel-rail noise generation,Part I:Introduction and interaction model[J]. Journal of Sound and Vibration,1993,161(3):387-400. [22] THOMPSON D J. Wheel-rail noise generation,Part II:Wheel vibration[J]. Journal of Sound and Vibration,1993,161(3):421-446. [23] THOMPSON D J.Wheel-rail noise generation,Part IV:Contact zone and results[J]. Journal of Sound and Vibration,1993,161(3):447-466. [24] THOMPSON D J. Railway noise and vibration:Mechanisms,modelling and means of control[M]. Amsterdam:Elsevier,2010. [25] XIAO Xinbiao,LI Yaguang,ZHONG Tingsheng,et al. Theoretical investigation into the effect of rail vibration dampers on the dynamical behaviour of a high-speed railway track[J]. Zhejiang Univ-Sci A, 2017,18(8):631-647. [26] THOMPSON D J,JONES C J C,WATERS T P,et al. A tuned damping device for reducing noise from railway track[J]. Applied Acoustic,2007,68:43-57. [27] LIU H,WU T,LI Z. Theoretical modelling and effectiveness study of rail vibration absorber for noise control[J]. Journal of Sound and Vibration,2009,323:594-608. [28] MAES J,SOL H. A double tuned rail damper-increased damping at the two first pinned-pinned frequencies[J]. Journal of Sound and Vibration,2003,267:721-737. [29] WAGNER N,HELFRICH R. Dynamic vibration absorber and its application[C/CD]//NAFEMS World Congress,2017. |