Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Architectural Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
Volume 55 Issue 5
May  2025
Turn off MathJax
Article Contents
BA Zhenning, ZHU Zeyu, FU Zhanyuan, WAN Yeqing. A Review on Research Status of Site Vibration Propagation Attenuation Induced by Industrial Vibration Sources[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(5): 248-261. doi: 10.3724/j.gyjzG23070105
Citation: BA Zhenning, ZHU Zeyu, FU Zhanyuan, WAN Yeqing. A Review on Research Status of Site Vibration Propagation Attenuation Induced by Industrial Vibration Sources[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(5): 248-261. doi: 10.3724/j.gyjzG23070105

A Review on Research Status of Site Vibration Propagation Attenuation Induced by Industrial Vibration Sources

doi: 10.3724/j.gyjzG23070105
  • Received Date: 2023-07-01
    Available Online: 2025-07-15
  • This study provides a comprehensive review of the current research on the propagation and attenuation of site vibrations induced by industrial sources. The exposition began by elucidating the definition, classification, and load forms associated with industrial sources. Subsequently, two analytical methods were summarized based on these studies: prediction and testing approaches for vibration propagation and attenuation. The discussion then elaborated on theoretical analysis prediction, empirical formula prediction, and numerical simulation prediction within the domain of vibration propagation attenuation prediction methods. Additionally, it delved into the current landscape of empirical testing methods in analytical studies. Finally, drawing upon a literature review, this paper explored pressing issues in the analysis of vibration propagation attenuation under the influence of industrial sources, providing forward-looking perspectives. This endeavor aims to stimulate the advancement of research in the realm of vibration propagation attenuation induced by industrial sources and to provide means of support for micro-vibration prevention and control within site regions, thereby enhancing environmental comfort.
  • loading
  • [1]
    朱石坚,楼京俊,何其伟,等. 振动理论与隔振技术[M]. 北京:国防工业出版社,2006.
    [2]
    楼梦麟,李守继. 地铁引起建筑物振动评价研究[J]. 振动与冲击,2007,26(8):68-71,170.
    [3]
    万叶青,严国庆,田树春. 12马力手扶拖拉机振动测试与舒适性评价[J]. 拖拉机,1985,1(2

    ):27-29,38.
    [4]
    梁志明,曾庆民,余建文,等. 机械加工行业手持打磨工具作业工人手传振动和噪声危害调查[J]. 预防医学,2020,32(6):621-624.
    [5]
    BODIENKOVA G M,KURCHEVENKO S I. Assessment of inflammation mediators under exposure to the vibration in employees in dependence on pronouncement of the pathological process[J]. Hygiene and Sanitation,2017,95(5):460-462.
    [6]
    TOHR N. The gap between evidence on hand-arm vibration hazards and risk management[J]. Occupational Medicine(Oxford,England),2019,69(2):80-82.
    [7]
    LYRATZAKIS A,TSOMPANAKIS Y,PSARROPOULOS P N. Efficient mitigation of high-speed train vibrations on adjacent reinforced concrete buildings[J]. Construction and Building Materials,2022,314(PB),125633.
    [8]
    高广运,孟园,陈娟. 高科技电子工业厂房微振动实测分析[C]//中国地质学会. 2018年全国工程地质学术年会论文集. 北京:科学出版社,2018:304-309.
    [9]
    孙浩诚,邢云林,郝勇,等. 公路交通荷载作用下场地微振动响应分析[J]. 噪声与振动控制,2022,42(5):208-213,220.
    [10]
    WASSERMAN D E,BADGER D W,DOYLE T E,et al. Industrial vibration—an overview[J]. ASSE Journal,1974,19(6):38-43.
    [11]
    TANIEWSKI J,MARZEC C. Effect of industrial vibration on the organ of hearing and equilibrium[J]. The Polish Otolaryngology,1964,18(1):487-491.
    [12]
    MIWA T,YONEKAWA Y. Measurement and evaluation of environmental vibrations:prat 1. problems concerning measurements[J]. Industrial Health,1973,11(4):159-176.
    [13]
    王贻荪. 地面波动分析若干问题[J]. 建筑结构学报,1982,3(2):56-67.
    [14]
    杨先健,茅玉泉. 关于“交通运输车辆引起的地面振动特性和衰减”一文的讨论[J]. 建筑结构学报,1987,8(5):77-80.
    [15]
    何少敏,王贻荪. 瞬态地面波动分析及试验[J]. 湖南大学学报(自然科学版),1992,19(3):53-59.
    [16]
    杨先健. 工业环境振动中的土动力学问题[J]. 岩土工程学报,1992,14(2):82-88.
    [17]
    中华人民共和国住房和城乡建设部. 古建筑防工业振动技术规范:GB/T 50452—2008[S]. 北京:中国建筑工业出版社,2008.
    [18]
    中国工程建设标准化协会建筑振动专业委员会. 场地振动影响评估标准:T/ CECS 1342—2023[S]. 北京:中国建筑工业出版社,2023.
    [19]
    中华人民共和国噪声污染防治法[J]. 中华人民共和国最高人民检察院公报,2022,189(4):1-10.
    [20]
    刘晶波,杜修力. 结构动力学[M]. 北京:机械工业出版社,2021.
    [21]
    陈果,翟婉明,左洪福. 250km/h高速铁路轨道不平顺的安全管理[J]. 西南交通大学学报,2001,36(5

    ):495-499.
    [22]
    中华人民共和国住房和城乡建设部. 建筑振动荷载标准:GB/T 51228—2017[S]. 北京:中国建筑工业出版社,2018.
    [23]
    AUERSCH L,SAID S. Attenuation of ground vibrations due to different technical sources[J]. Earthquake Engineering and Engineering Vibration,2010,9(3):337-344.
    [24]
    TAKEMIYA H,GODA K. Wave propagation/impediment in a soil stratum over rigid base due to impulse/moving loads[J]. Doboku Gakkai Ronbunshu,1998,50:161-169.
    [25]
    卢华喜,梁平英,徐晏平. 高速列车引起建筑物振动的研究方法概述[J]. 噪声与振动控制,2010,30(4):50-53.
    [26]
    LAMB H. On the propagation of tremors over the surface of an elastic solid[J]. Philosophical Transactions of the Royal Society of London,1904,203:1-42.
    [27]
    MILLER G F,PURSEY H. On the partition of energy between elastic waves in a semi-infinite solid[J]. Mathematical and Physical Sciences,1955,233:55-69.
    [28]
    WOODS R D. Screening of surface wave in soils[J]. Journal of the Soil Mechanics and Foundations Division,1968,94(4):951-980.
    [29]
    张有龄,动力基础的设计原理[M]. 北京:科学出版社,1959.
    [30]
    HOLZLOHNER U. Vibrations of the elastic half‐space due to vertical surface loads[J]. Earthquake Engineering& Structural Dynamics,1980,8(5):405-414.
    [31]
    陈龙珠,严细水,秦建堂. 点源激振下地表竖向位移的近-远场分界线[J]. 防灾减灾工程学报,2004,24(2):126-130.
    [32]
    王贻荪. 半无限体表面在竖向集中谐和力作用下表面竖向位移的精确解[J]. 力学学报,1980,1(4):386-391.
    [33]
    WANG C Y,ACHENBACH J D. Lamb's problem for solids of general anisotropy[J]. Wave Motion,1996,24(3):227-242.
    [34]
    JONGMANS D. Prediction of ground vibrations caused by pile driving:a new methodology[J]. Engineering Geology,1996,42(1):25-36.
    [35]
    彭文韬,徐必兵,谢伟平. 打桩引起的地面振动的研究[J]. 地震工程与工程振动,2007,27(6):135-139.
    [36]
    杨国泰,黄菊花,杨雪春,等. 锻压车间振动传播的分析与预测[J]. 机械工程学报,2001,37(1):46-49.
    [37]
    中华人民共和国住房和城乡建设部. 动力机器基础设计规范:GB 50040—96[S]. 北京:中国计划出版社,1996.
    [38]
    GAKENHEIMER D C,MIKLOWITZ J. Transient excitation of an elastic half space by a point load traveling on the surface[J]. Journal of Applied Mechanics,1969,36(3):505-515.
    [39]
    HUNT H E M. Stochastic modelling of traffic-induced ground vibration[J]. Journal of Sound and Vibration,1991,144(1):53-70.
    [40]
    HUNT H E M. Modelling of road vehicles for calculation of traffic-induced ground vibration as a random process[J]. Journal of Sound and Vibration,1991,144(1):41-51.
    [41]
    HAO H,ANG T C. Analytical modeling of traffic-induced ground vibrations[J]. Journal of Engineering Mechanics,1998,124(8):921-928.
    [42]
    聂志红,刘宝琛,李亮,等. 移动荷载作用下轨道路基动力响应分析[J]. 中国铁道科学,2006,27(2):15-19.
    [43]
    钱涛,张永发,水小平,等. 埋置高速移动荷载作用下黏弹性半空间地表响应规律研究[J]. 北京理工大学学报,2013,33(6):562-565,599.
    [44]
    KRYLOV V V. Spectra of low-frequency ground vibrations generated by high-speed trains on layered ground[J]. Journal of Low Frequency Noise,Vibration and Active Control,1997,16(4):257-270.
    [45]
    JONES C J C,SHENG X,PETYT M. Simulations of ground vibration from a moving harmonic load on a railway track[J]. Journal of Sound and Vibration,2000,231(3):739-751.
    [46]
    SHENG X,JUNES C J C,PETYT M. Ground vibration generated by a load moving along a railway track[J]. Journal of Sound and Vibration,1999,228(1):129-156.
    [47]
    FORREST J A,HUNT H E M. A three-dimensional tunnel model for calculation of train-induced ground vibration[J]. Journal of Sound and Vibration,2005,294(4):678-705.
    [48]
    曹艳梅,夏禾,陈建国. 运行列车引起地面振动的理论模型及振动特性分析[J]. 振动工程学报,2009,22(6):589-596.
    [49]
    XIA H,CAO Y M,ROECK G D. Theoretical modeling and characteristic analysis of moving-train induced ground vibrations[J]. Journal of Sound and Vibration,2009,329(7):819-832.
    [50]
    薛富春,张建民,马建林,等. 运行条件下车辆-轨道-路基-地基强耦合大系统振动变形精细化分析方法[J]. 应用基础与工程科学学报,2023,31(1):81-102.
    [51]
    马晓冬,朱国甫,刘立胜,等. 动力打桩过程中饱和黏土地基的响应[J]. 岩石力学与工程学报,2020,39(1):205-216.
    [52]
    周航,王增亮,申航,等. 软黏土中静压桩打桩过程对土体强度和刚度影响的理论分析[J]. 北京工业大学学报,2021,47(7):719-727,814.
    [53]
    KOLESNIKOV A O,KOSTIUK T N,POPOV V N. Attenuation of the soil vibration amplitude at pile driving[J]. Magazine of Civil Engineering,2020,95:42-48.
    [54]
    ZHANG Y M,YIN J C,BAI X Y,et al. Study on damage constitutive relationship of mudstone affected by dynamic pile driving[J]. Soil Dynamics and Earthquake Engineering,2023,164,107653.
    [55]
    梁建文,吴孟桃,巴振宁. 移动荷载作用下TI饱和半空间动力响应分析[J]. 振动、测试与诊断,2020,40(6):1112-1119.
    [56]
    梁建文,吴孟桃,巴振宁. 层状TI饱和场地中三维点源动力格林函数[J]. 地震工程与工程振动,2020,40(5):52-60.
    [57]
    BA Z N,LIANG J W,LEE W V,et al. A semi-analytical method for vibrations of a layered transversely isotropic ground-track system due to moving train loads[J]. Soil Dynamics and Earthquake Engineering,2019,121:25-39.
    [58]
    WANG S Q,CAO Z G,XU Y F,et al. Prediction and mitigation of train-induced vibrations of over-track buildings on a metro depot:field measurement and numerical simulation[J]. Journal of Vibration and Control,2023,29(23/24):5413-5426.
    [59]
    SUN Y G,HE Z Y,XU J Q,et al. Dynamic analysis and vibration control for a maglev vehicle-guideway coupling system with experimental verification[J]. Mechanical Systems and Signal Processing,2023,188:739-750.
    [60]
    ZOU C,MOORE J A,SANAYEI M,et al. Impedance model of train-induced vibration transmission across a transfer structure into an overtrack building in a metro depot[J]. Journal of Structural Engineering,2022,148(11),107653.
    [61]
    BORNITZ G. Uber Die Ausbreitung der von Groszkolbenmashinen Erzeugten Bodenschwing-Ungen indie Tiefe[M]. Berlin:Springer,1931.
    [62]
    中国船舶工业总公司第九设计研究院. 隔振设计手册[M]. 北京:中国建筑工业出版社,1986.
    [63]
    杨先健. 动力机械引起的地面振动衰减[J]. 湖南大学学报,1982,9(3):12-18.
    [64]
    中华人民共和国住房和城乡建设部. 动力机器基础设计规范:GBJ 40—79[S]. 北京:中国建筑工业出版社,1979.
    [65]
    中华人民共和国住房和城乡建设部. 动力机器基础设计标准:GB 50040—2020[S]. 北京:中国计划出版社,2020.
    [66]
    杨先健,徐建,张翠红. 土-基础的振动与隔振[M]. 北京:中国建筑工业出版社,2013.
    [67]
    王锡康,段士伟,杨先健. 弹性波在土体中的传递[J]. 土木工程学报,1988,21(2):14-22.
    [68]
    茅玉泉. 锻压设备引起的地面振动特性和衰减[J]. 建筑结构学报,1992,13(5):71-76.
    [69]
    茅玉泉. 交通运输车辆引起的地面振动特性和衰减[J]. 建筑结构学报,1987,8(1):67-77.
    [70]
    张允士,陈骝,陈璠. 基于土体参数估算土体振动衰减系数的方法研究[J]. 地下空间与工程学报,2022,18(3):818-823.
    [71]
    夏禾. 交通环境振动工程[M]. 北京:科学出版社,2010.
    [72]
    Federal Transit Administration. Transit noise and Vibration impact Assessment:FTA-VA-90-1003-06[R]. USA:Office of Planning and Environment,Federal Transit Administration(FTA),2006.
    [73]
    中华人民共和国生态环境部. 环境影响评价技术导则 城市轨道交通:HJ 453—2018[S]. 北京:中国环境科学出版社,2018.
    [74]
    KURZWEIL L G. Ground-borne noise and vibration from underground rail systems[J]. Journal of Sound and Vibration,1979,66(3):363-370.
    [75]
    MELKE J. Noise and vibration from underground railway lines:proposals for a prediction procedure[J]. Journal of Sound and Vibration,1988,120(2):391-406.
    [76]
    FUJIKAKE T. A Prediction method for the propagation of ground vibration from railway trains[J]. Journal of Sound and Vibration,1986,111(2):357-360.
    [77]
    FUJIKAKE T. A prediction method for the propagation of ground vibration from railway trains on level tracks with welded rails[J]. Journal of Sound and Vibration,1989,128(3):524-527.
    [78]
    MADSHUS C,BESSASON B,HARVIK L. Prediction model for low frequency vibration from high speed railways on soft ground[J]. Journal of Sound and Vibration,1996,193(1):195-203.
    [79]
    XU Q Y,XIAO Z C,LIU T,et al. Comparison of 2D and 3D prediction models for environmental vibration induced by underground railway with two types of tracks[J]. Computers and Geotechnics,2015,68(1):169-183.
    [80]
    张智梅,黄海涛,张继红. 锤击法和振动法沉桩对周边环境影响的研究[J]. 地下空间与工程学报,2017,13(4):1129-1136.
    [81]
    韩俊艳,万宁潭,赵密,等. 打桩荷载作用下自由场土体振动衰减规律研究[J]. 震灾防御技术,2020,15(2):274-284.
    [82]
    张鹤年,阳建强,孙广俊,等. 地铁运行诱发的环境振动数值模拟与模型预测[J]. 东南大学学报(自然科学版),2012,42(5):988-993.
    [83]
    韩俊艳,万宁潭,赵密,等. 地铁振动荷载作用下场地动力响应及振动衰减规律研究[J]. 防灾减灾工程学报,2022,42(1):191-199.
    [84]
    吴宗臻. 地铁列车振动环境影响的传递函数预测方法研究[D]. 北京:北京交通大学,2016.
    [85]
    张宜聪,张纪刚,程赟,等. 某大型工业厂房振动检测与减振分析[J]. 噪声与振动控制,2022,42(5):227-233.
    [86]
    张刚,尹文汉,肖蕾,等. 地下旋转设备对周边建筑的振动舒适度影响与减振分析[J]. 建筑结构,2022,52(增刊2):833-839.
    [87]
    王俊林,许琨. 冲击荷载作用下地基土变形及动力特性[J]. 科学技术与工程,2020,20(6):2411-2416.
    [88]
    韩云山,董彦莉,王元龙,等. 不同夯击方式下地表土体振动衰减规律研究[J]. 中北大学学报(自然科学版),2015,36(4):475-480,487.
    [89]
    ABEDINI F,RAFIEE-DEHKHARGHANI R,LAKNEJADI K. Mitigation of vibrations caused by dynamic compaction considering soil nonlinearity[J]. International Journal of Civil Engineering,2022,20(7):809-826.
    [90]
    赵延林,龚雨林,张子煜. 深厚换填砂土地基强夯有效加固深度的影响因素[J]. 黑龙江科技大学学报,2023,33(5):710-717.
    [91]
    曹利,卞海丁,张哲,等. 高能级强夯黄土地基振动衰减规律模型试验研究[J]. 科学技术与工程,2023,23(15):6581-6590.
    [92]
    陈云敏,凌道盛,周承涛. 打桩振动近场波动的数值分析和实测比较[J]. 振动工程学报,2002,15(2):58-64.
    [93]
    MASOUMI H R,DEGRANDE G,LOMBAERT G. Prediction of free field vibrations due to pile driving using a dynamic soil-structure interaction formulation[J]. Soil Dynamics and Earthquake Engineering,2006,27(2):126-143.
    [94]
    COLAGO A,ALVES C,MONT’ALVERNE P C,et al. Ground-borne noise and vibrations in buildings induced by pile driving:an integrated approach[J]. Applied Acoustics,2021,179,108059.
    [95]
    苏栋,吴泽雄,雷国平,等. 打桩施工对既有隧道及地表振动的影响[J]. 地下空间与工程学报,2021,17(增刊2):868-877.
    [96]
    王国波,殷耀,岑欣欣,等. 强地表冲击荷载下矩形地下混凝土结构振动安全性评价方法[J]. 振动工程学报,2022,35(5):1048-1057.
    [97]
    陶连金,李晓霖,陆熙,等. 地铁诱发地面运动的衰减规律的研究分析[J]. 世界地震工程,2003,19(1):83-87.
    [98]
    WOLF S. Potential low frequency ground vibration(<6.3Hz)impacts from underground LRT operations[J]. Journal of Sound and Vibration,2003,267(3):651-661.
    [99]
    邓飞皇,莫海鸿,曾庆军. 地铁运行振动诱发地层和地表动力响应分析[J]. 科学技术与工程,2007,7(3):348-351.
    [100]
    KATOU M,MATSUOKA T,YOSHIOKA O,et al. Numerical simulation study of ground vibrations using forces from wheels of a running high-speed train[J]. Journal of Sound and Vibration,2008,318(4):830-849.
    [101]
    刘建达,苏晓梅,陈国兴,等. 地铁运行引起的地面振动分析[J]. 自然灾害学报,2007,16(5):148-154.
    [102]
    孟宪春,景立平,孙海峰. 地铁运行对地面环境的振动影响[J]. 世界地震工程,2010,26(增刊1):310-314.
    [103]
    张琼,雷军,赵永红,等. 地铁及地面交通频率对地表环境振动的影响[J]. 地球物理学进展,2017,32(6):2703-2708.
    [104]
    和振兴,翟婉明,罗震. 地铁列车引起的地面振动[J]. 西南交通大学学报,2008,43(2):218-221.
    [105]
    严涛,肖新标,金学松,等. 地铁列车运行引起的环境振动三维数值分析[J]. 铁道建筑,2010,437(7):67-69,112.
    [106]
    刘一文,巴振宁,高愈辉,等. 天津Z2线地铁运营对沿线地面振动的影响分析[J]. 岩土工程学报,2019,41(增刊1):193-196.
    [107]
    巴振宁,高愈辉,梁建文,等. 天津软土地区地铁运营沿线地面振动响应实测与建模分析[J]. 噪声与振动控制,2021,41(1):160-167.
    [108]
    高广运,何俊锋,杨成斌,等. 2.5维有限元分析饱和地基列车运行引起的地面振动[J]. 岩土工程学报,2011,33(2

    ):234-241.
    [109]
    YANG Y B,HUNG H H,CHANG D W. Train-induced wave propagation in layered soils using finite/infinite element simulation[J]. Soil Dynamics and Earthquake Engineering,2003,23(4):263-278.
    [110]
    CONNOLLY D,GIANNOPOULOS A,FORDE M C. Numerical modelling of ground borne vibrations from high speed rail lines on embankments[J]. Soil Dynamics and Earthquake Engineering,2013,46(1):13-19.
    [111]
    曹艳梅,王福星,张允士. 高速列车作用下场地振动的分析方法及特性研究[J]. 铁道学报,2017,39(6):118-124.
    [112]
    梁建文,张波,巴振宁. 地基动力特性对地铁列车振动荷载诱发振动的影响[J]. 地震工程与工程振动,2015,35(1):94-104.
    [113]
    巴振宁,梁建文,金威. 高速移动列车荷载作用下成层地基-轨道耦合系统的动力响应[J]. 土木工程学报,2014,47(11):108-119.
    [114]
    O'BRIEN J,RIZOS D C. A 3D BEM-FEM methodology for simulation of high speed train induced vibrations[J]. Soil Dynamics and Earthquake Engineering,2005,25(4):289-301.
    [115]
    SHENG X,JONES C J C,THOMPSON D J. Prediction of ground vibration from trains using the wavenumber finite and boundary element methods[J]. Journal of Sound and Vibration,2005,293(3):575-586.
    [116]
    GUPTA S,STANUS Y,LOMBAERT G,et al. Influence of tunnel and soil parameters on vibrations from underground railways[J]. Journal of Sound and Vibration,2009,327(1):70-91.
    [117]
    GALVÍN P,ROMERO A,DOMINGUEZ J. Fully three-dimensional analysis of high-speed train-track-soil-structure dynamic interaction[J]. Journal of Sound and Vibration,2010,329(24):5147-5163.
    [118]
    DING D Y,LIU W N,GUPTA S,et al. Prediction of vibrations from underground trains on beijing metro line 15[J]. Journal of Central South University of Technology,2010,17(5):1109-1118.
    [119]
    马蒙,刘维宁,丁德云,等. 地铁列车振动对精密仪器影响的预测研究[J]. 振动与冲击,2011,30(3):185-190.
    [120]
    HANAZATO T,UGAI K,MORI M,et al. Three‐dimensional analysis of traffic‐induced ground vibrations[J]. Journal of Geotechnical Engineering,1991,117(8):1201-1216.
    [121]
    LAK M A,DEGRANDE G,LOMBAERT G. The effect of road unevenness on the dynamic vehicle response and ground-borne vibrations due to road traffic[J]. Soil Dynamics and Earthquake Engineering,2011,31(10):1357-1377.
    [122]
    时刚,田新涛. 工程卡车行驶引发地面振动特性研究[J]. 郑州大学学报(工学版),2020,41(5):76-81.
    [123]
    ALSULTAN A S. Assessment of microstructure and surface effects on vibrational characteristics of public transportation[J]. Advances in Nano Research,2021,11(1):101-113.
    [124]
    LIANG R H,LIU W F,MA M,et al. An efficient model for predicting the train-induced ground-borne vibration and uncertainty quantification based on bayesian neural network[J]. Journal of Sound and Vibration,2020,495,115908.
    [125]
    HU Z H,TIAN L,ZOU C,et al. Train-induced vibration attenuation measurements and prediction from ground soil to building column[J]. Environmental Science and Pollution Research International,2023,30(13):39076-39092.
    [126]
    陈璠. 环境激励下的场地振动衰减规律试验研究[D]. 北京:北京建筑大学,2019.
    [127]
    刘必灯,郭迅,周洋,等. 大型地震模拟振动台运行对周围场地影响的试验研究[J]. 振动与冲击,2016,35(13):212-218.
    [128]
    黄菊花,肖祥芷,董湘怀,等. 关于动力机器基础激发的地面振动衰减公式的讨论[J]. 塑性工程学报,2001,8(3):85-88.
    [129]
    黄菊花,揭小平,何成宏,等. 热模锻压力机车间振动传播及现场实测[J]. 振动与冲击,2000,19(2):80-82,87,98.
    [130]
    郭昭胜. 锻锤生产引起的环境振动测试及分析[J]. 四川建筑科学研究,2014,40(5):182-187.
    [131]
    徐建. 建筑振动工程实例[M]. 北京:中国建筑工业出版社,2022.
    [132]
    MAYNE P W,JONES J S,DUMAS J C. Ground response to dynamic compaction[J]. Journal of Geotechnical Engineering,1984,110(6):757-774.
    [133]
    水伟厚,朱建锋. 10000kN·m高能级强夯振动加速度实测分析[J]. 工业建筑,2006,36

    (1):37-39.
    [134]
    WU J W,MA L J,SHI J,et al. Investigation of ground vibration of full-stone foundation under dynamic compaction[J]. Shock and Vibration,2019,2019:1-11.
    [135]
    MENG Q J,QIAO J S,WANG L. Model test study on transfer law of dynamic stress produced by dynamic compaction[J]. Systems Engineering Procedia,2011,1(1):74-79.
    [136]
    刘超,梁海安,程新俊,等. 城市软土地基组合锤法强夯施工振动效应研究[J]. 震灾防御技术,2021,16(2):381-390.
    [137]
    王斯海,陈海军,王世坚. 不同土层结构场地强夯振动效应研究[J]. 施工技术,2016,45(增刊1):15-19.
    [138]
    张宏博,厉超,宋修广,等. 强夯加固粉土地基地面振动衰减规律研究[J]. 地下空间与工程学报,2015,11(5):1289-1295.
    [139]
    魏迎奇,蔡红,吴帅峰,等. 高填方土石混合料强夯振动响应及加固机理研究[J]. 岩土工程学报,2019,41(增刊1):237-240.
    [140]
    佘艳华,苏华友,肖正学,等. 桥梁桩基冲孔桩施工的微振动响应研究[J]. 重庆交通大学学报(自然科学版),2011,30(1):35-38,101.
    [141]
    方华建,蒋军,胡琦. 软黏土地基中振动挤土桩施工对周围建筑物影响的分析[J]. 地基处理,2020,2(3):217-221.
    [142]
    VESHNYAKOV A V. Investigation of ground and foundation vibrations of an existing building during impact pile driving[J]. Materials Science and Engineering,2020,945(1),012055.
    [143]
    BALAN K,JAYA V,ARUN C. Prediction of ground vibrations produced in DMC type of piling through soft and hard strata[J]. Indian Geotechnical Journal,2016,46(1):45-55.
    [144]
    VOLBERG G. Propagation of ground vibrations near railway tracks[J]. Journal of Sound and Vibration,1983,87(2):371-376.
    [145]
    夏禾,张楠,曹艳梅. 列车对周围地面及建筑物振动影响的试验研究[J]. 铁道学报,2004,26(4):93-98.
    [146]
    陈建国,夏禾,曹艳梅,等. 运行列车对周围建筑物振动影响的试验研究[J]. 振动工程学报,2008,21(5):476-481.
    [147]
    马利衡,梁青槐,谷爱军,等. 沪宁城际高速铁路路基段振动试验研究及数值分析[J]. 铁道学报,2014,36(1):88-93.
    [148]
    高广运,何俊锋,李志毅,等. 列车运行引起的地面振动衰减分析[J]. 交通科学与工程,2010,26(1):74-78.
    [149]
    刘厚毅,周游,钟康明,等. 场地条件对高速铁路地基土振动影响的研究[J]. 震灾防御技术,2018,13(4):893-902.
    [150]
    郑国琛,许航莉,祁皑,等. 地铁及地面交通环境振动实测与数值模拟研究[J]. 中国环境科学,2020,40(9):4146-4154.
    [151]
    HUNAIDI O,GUAN W,NICKS J. Building vibrations and dynamic pavement loads induced by transit buses[J]. Soil Dynamics and Earthquake Engineering,2000,19(6):435-453.
    [152]
    LOMBAERT G,DEGRANDE G. The experimental validation of a numerical model for the prediction of the vibrations in the free field produced by road traffic[J]. Journal of Sound and Vibration,2003,262(2):512-535.
    [153]
    楼梦麟,谭广宝. 公路交通运行引起的振动实测及其衰减分析[J]. 力学季刊,2013,34(4):663-672.
    [154]
    秦林,宗刚. 地面交通荷载引发的场地振动实测分析[J]. 公路,2013,1(5):194-198.
    [155]
    孙浩诚,邢云林,郝勇,等. 公路交通荷载作用下场地微振动响应分析[J]. 噪声与振动控制,2022,42(5):208-213,220.
    [156]
    曹志亮. 高架地铁车库—上盖物业振动舒适度与控制研究[D]. 南京:东南大学,2018.
    [157]
    黄伟,徐建,陆新征. 基于解耦的工程振动控制[J]. 合肥工业大学学报(自然科学版),2021,44(2):217-221.
    [158]
    张欢,胡岳银,肖俊恒,等. 城市轨道交通高架线减振扣件设计及现场应用[J]. 铁道标准设计,2024,68(4):42-47.
    [159]
    WANG Y K,HE Z X,WANG K Y,et al. Comparing dynamic performance between new sleeper-damping and floating-slab track system[J]. Construction and Building Materials,2023,400,132588.
    [160]
    曹子勇,和振兴,苏程,等. 新型弹性侧支撑长轨枕式减振轨道结构力学特性研究[J]. 振动与冲击,2023,42(17):25-34,85.
    [161]
    余尚江,万叶青,陈晋央,等. 打击力测试传感器设计及试验研究[J]. 合肥工业大学学报(自然科学版),2016,39(6):828-832.
    [162]
    黄伟,徐建,陆新征,等. 动力装备和建筑楼盖的动力吸振研究[J]. 工程设计学报,2021,28(1):25-32
    [163]
    刘晶磊,尚康君,周玮浩,等. 土体参数对空沟隔振效果的影响研究[J]. 震灾防御技术,2023,18(1):171-177.
    [164]
    陈青生,郭冬冬,李杨,等. 不同排数新型空沟屏障隔振效果研究[J]. 地震工程与工程振动,2021,41(2):65-75.
    [165]
    SITHARAM T,SEBASTIAN R,FAZIL F. Vibration isolation of buildings housed with sensitive equipment using open trenches-case study and numerical simulations[J]. Soil Dynamics and Earthquake Engineering,2018,115:344-351.
    [166]
    刘晶磊,张业荣,张冲冲,等. 双排隔振屏障对振动波的阻隔作用及动力响应分析[J]. 世界地震工程,2022,38(3):162-170.
    [167]
    WU M T,WANG B,BA Z N,et al. Vibration isolation of infinitely periodic pile barriers for anti-plane shear waves:an exact series solution[J]. Soil Dynamics and Earthquake Engineering,2024,176,108347.
    [168]
    WANG G B,YIN Y,WANG J N. Vibration safety evaluation and vibration isolation control measures for buried oil pipelines under dynamic compaction:a case study[J]. Soil Dynamics and Earthquake Engineering,2023,167,107783.
    [169]
    孟玉山,尚康君,刘鹏泉,等. 层状地基分界面对于空沟隔振效果的影响分析[J]. 地震工程学报,2021,43(2):404-411.
    [170]
    巴振宁,刘世朋,吴孟桃,等. 周期分布桩体对平面SH波隔振效应的解析求解[J]. 岩土力学,2020,41(9):2861-2868.
    [171]
    刘维宁,姜博龙,马蒙,等. 周期性排桩设计频段隔振原理性试验研究[J]. 岩土力学,2019,40(11):4138-4148.
    [172]
    姜广州,王洋,张冲冲,等. 层状土中双排环形排列桩隔振效果的研究[J]. 铁道科学与工程学报,2021,18(4):918-925.
    [173]
    GAO G Y,ZHANG Q W,CHEN J,et al. Field experiments and numerical analysis on the ground vibration isolation of wave impeding block under horizontal and rocking coupled excitations[J]. Soil Dynamics and Earthquake Engineering,2018,115:507-512.
    [174]
    于可辉,何旭辉,邹云峰,等. 周期性波组块对高架桥临近场地的减振分析[J]. 华中科技大学学报(自然科学版),2022,50(1):88-92,104.
    [175]
    CHEN J,GENG J L,GAO G Y,et al. Mitigation of subway-induced low-frequency vibrations using a wave impeding block[J]. Transportation Geotechnics,2022,37,100862.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (84) PDF downloads(1) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return