邹超(副教授)

硕士生导师

所在单位:土木与交通工程学院

学历:博士

性别:男

联系方式:chao.zou@gdut.edu.cn

学位:工学博士学位

在职信息:在职

毕业院校:South China University of Technology

学科:道路与铁道工程
桥梁与隧道工程

学术成果

当前位置: 邹超 >> 学术成果

  • 期刊论文 (*通讯作者)

  1. Yang G, Wang Y, Liao Z, Mei W, Luo W, Zou C*. A Traffic-Simulation-Coupled Framework for Predicting Building Vibrations Induced by Traffic Flow in Integrated Road-Building Structures [J]. Engineering Structures, 2026, 368, 123685. 

  2. Li X, Zhang Y, Luo W, Liu Q, Zou C*. A novel hybrid data-driven approach for rapid estimation of building vibration responses in urban rail transit systems [J]. Mechanical Systems and Signal Processing, 2026, 259, 114932. 

  3. Liu J, He W, Xin J, Zou C, Li X. A 2.5D computational framework for noise source intensity prediction in elevated metro lines with sound barriers[J]. Applied Acoustics, 2026, 254, 111482.

  4. Liu Q, Gao K, Song L, Luo W, Zou C. Investigation on dominant sound sources of elevated line of urban rail transit and noise mitigation using barriers and vibration-damping tracks [J]. Results in Engineering, 2026, 32, 112474. 

  5. Qiu Y, Zheng B, Jiang B, Jiang S, Zou C*. Effect of non-structural components on over-track building vibrations induced by train operations on concrete floor[J]. Int. J. Struct. Stab. Dyn, 2026, 21, 2650180.

  6. Guo W, Hong X, Luo W, Tong L, Ding H, Zou C. Rapid prediction of metro tunnel vibration via linear expression method and component mode synthesis[J]. Tunnelling and Underground Space Technology, 2026, 175, 107689.

  7. Zou C, Zhang Y, Jiang S, et al. A domain-knowledge-driven deep learning framework for automatic recognition of train-induced ground-borne vibrations [J]. Measurement, 2026, 284, 122225.

  8. 郭文杰, 李佳宝, 罗文俊, 童立红, 丁海滨, 邹超. 基于区域分解的复合型周期隔振基础带隙特性研究[J]. 中国科学: 技术科学, 2026, 56(5): 1407-1417.

  9. 吴杰, 韩贝林, 张舣航, 邹超, 辛莉峰. 微调稳定扩散模型的裂缝图像数据集扩充方法[J]. 浙江大学学报(工学版), 2026, 60(5): 926-934.

  10. Li X, Zheng B, Luo W, Guo W, Zou C*. Resident subjective annoyance responses to combined road traffic and train-induced structure-borne noise: Effects of sound environment [J]. The Journal of the Acoustical Society of America, 2026, 159(6): 5609-5632

  11. Li X, Liang H, Luo W, Guo W, Zou C*. Vibro-acoustic coupling characteristic of railway-adjacent building: From out-of-plane vibrations of wall and floor to structure-borne noise[J]. Measurement, 2026, 269, 120732.

  12. Tu D, Tao Z, Zheng B, Zou C*,Hu J. Influence of spatially varied soil property on train-induced soil-to-column vibration transmission[J]. International Journal of Structural Stability and Dynamics, 2026, 26(07): 2541009.

  13. Xu L, Gao M, Tan X, Zou C, Ma M. Fast prediction of vibration source intensity induced by metro trains moving on regular and floating slab tracks[J]. Journal of Zhejiang University-SCIENCE A, 2026: 27(1): 12-25.

  14. Hu J, Zou C, Liao Z, et al. Structure-Borne Noise Prediction in Buildings Adjacent to Rail Lines Using the Combined FEM with Rayleigh Integral Approach[J]. International Journal of Structural Stability and Dynamics, 2026.

  15. Li X, Chen Y, Luo W, Guo W, Zou C*Characteristics and prediction of over-track building vibration response due to train operation in turnout areas[J]. Transportation Geotechnics, 2026, 57, 101859.

  16. Yuan Z, Xie K, Huang Z, Zhang J, Cai Y, Zou C. Power flow analysis of subway-induced vibration transmission in superstructures[J]. International Journal of Rail Transportation, 2026: 1-20.

  17. Li X, Zou C*, Wei K, et al. An efficient methodology for estimating building vibration due to train operations on ground surface considering transmission path from source to receiver[J]. Journal of Building Engineering, 2025, 111, 113397.

  18. Zou C*, Zhao Y, Luo W*, et al. Dynamic coupling mechanisms and hybrid mitigation of vibration transmission in metro depot climbing lines[J]. Construction and Building Materials, 2025, 492: 142873.

  19. Sun C, He W, Zou C. High-Precision Visual Monitoring Method for Bridge Displacement Based on Computer Vision and Its Engineering Application[J]. Applied Sciences, 2025, 15(18): 10023.

  20. Tu D, Luo W, Guo W, Zou C*. Parameterized design optimization of pile foundations for train-induced vibration mitigation in rail-over-building systems[J]. Structures. 2025, 82: 110488.

  21. Tao Z, Zhang D, Tu D, He L, & Zou C*. Prediction of train-induced ground-borne vibration transmission considering parametric uncertainties[J]. Probabilistic Engineering Mechanics, 2025, 79, 103731.(ESI高被引)

  22. Li X, Zheng B, Chen Y, & Zou C*. A hybrid methodology for estimating train-induced rigid foundation building vibrations[J]. Construction and Building Materials, 2025, 460, 139852. (ESI高被引)

  23. 刘天正,陈嘉梁,邹超,等.地铁激励下筏板基础建筑振动响应实测与预测模型研究[J].噪声与振动控制, 2025, 45(04): 252-258.

  24. Zou C, Li X, He C*, & Zhou S. An efficient method for estimating building dynamic response due to train operations in tunnel considering transmission path from source to receiver [J]. Computers & Structures, 2024, 305, 107555.

  25. 路清泉, 陈嘉梁, 邹超*, 等. 基于导纳理论的车致结构振动响应模型[J]. 都市快轨交通, 2024, 37(06): 57-63.

  26. Zou C*, Hu J, Li X, et al. Noise exposure assessment of over-track buildings induced by train operations[J]. Applied Acoustics, 2024, 225: 110170.

  27. Hu J, Zou C*, Liu Q, et al. Floor vibration predictions based on train-track-building coupling model[J]. Journal of Building Engineering, 2024, 89: 109340.(ESI热点/高被引)

  28. Li H, He C, Gong Q, Zhou S, Li X, & Zou C. TLM-CFSPML for 3D dynamic responses of a layered transversely isotropic half-space[J]. Computers and Geotechnics, 2024, 168: 106131. (ESI高被引)

  29. Li X, Chen Y, Zou C*, et al. Building structure-borne noise measurements and estimation due to train operations in tunnel[J]. Science of The Total Environment, 2024, 926: 172080. (ESI高被引)

  30. Qiu Y, Zou C*, Hu J, et al. Prediction and mitigation of building vibrations caused by train operations on concrete floors[J]. Applied Acoustics, 2024, 219: 109941. (ESI高被引)

  31. Tao Z, He L, Tu D, Zou C*. Probabilistic Prediction and Assessment of Train-Induced Vibrations Based on Mixture Density Model[J]. Buildings, 2024, 14(11): 3468.

  32. Hu J, Zou C, Chen Y, et al. Investigation of Vibration Characteristics during Various Building Construction Stages under Train Operations[J]. Applied Sciences, 2024, 14(6): 2283.

  33. Li X, Chen Y, Zou C*, et al. Train-induced vibration mitigation based on foundation improvement[J]. Journal of Building Engineering, 2023, 76: 107106.

  34. Qiu Y, Zou C*, Wu J, et al. Building vibration measurements induced by train operation on concrete floor[J]. Construction and Building Materials, 2023, 394: 132283.

  35. Yuan Z, Wu J, Sun H, Cai Y Zou C. Practical back-analysis methodology to predict underground train-induced building vibrations[J]. Environmental Science and Pollution Research, 2023, 30(20): 58697-58715.

  36. Tao Z Y, Zou C*, Yang G R, et al. A semi-analytical method for predicting train-induced vibrations considering train-track-soil and soil-pile-building dynamic interactions[J]. Soil Dynamics and Earthquake Engineering, 2023, 167: 107822.

  37. Hu Z, 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, 2023, 30(13): 39076-39092.

  38. Tao Z, Zou C*, Wang Y, et al. Vibration transmissions and predictions within low-rise buildings above throat area in the metro depot[J]. Journal of Vibration and Control, 2023, 29(5-6): 1105-1116.

  39. 邹超, 冯青松, 何卫. 列车运行引起地铁车辆段与上盖建筑环境振动研究综述[J]. 交通运输工程学报, 2023, 23(1): 27-46. (2024年度优秀论文)

  40. Li X, Chen Y, Zou C*, et al. Building coupling loss measurement and prediction due to train-induced vertical vibrations[J]. Soil Dynamics and Earthquake Engineering, 2023, 164: 107644. (ESI高被引)

  41. He W, He K, Yao C, Liu P, Zou C*. Comparison of damping performance of an aluminum bridge via material damping, support damping and external damping methods[J]. Structures, 2022, 45: 1139-1155.

  42. 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): 04022187.

  43. 邹超, 陈颖, 陶子渝,等.地铁车辆段上盖建筑水平向振动特性与预测方法研究[J].建筑结构学报, 2022, 43(7): 282-289.

  44. Huang S, Chen Y, Zou C*, et al. Train-induced environmental vibrations by considering different building foundations along curved track[J]. Transportation Geotechnics, 2022, 35: 100785.

  45. Wu J, Cheng F, Zou C, et al. Swarm intelligent optimization conjunction with kriging model for bridge structure finite element model updating[J]. Buildings, 2022, 12(5): 504.

  46. 陶子渝, 汪益敏, 邹超*. 基于阻抗和功率守恒法的地铁车辆段上盖建筑车致振动预测模型研究[J]. 振动与冲击, 2022, 7: 62-67.

  47. Tao Z, Moore J A, Sanayei M, Wang Y, Zou C. Train-induced floor vibration and structure-borne noise predictions in a low-rise over-track building[J]. Engineering Structures, 2022, 255: 113914.

  48. 汪益敏, 陶子渝, 邹超*, 等. 地铁车辆段咽喉区上盖建筑振动传播规律[J]. 交通运输工程学报, 2022, 22(1): 112-121.

  49. Tao Z, Hu Z, Wu G, ...Zou C*. Train-induced vibration predictions based on data-driven cascaded state-space model[J]. Buildings, 2022, 12(2): 114.

  50. Zou J, Du T, Chen W, Fang C, Zhang S, Zou C, et al. Experimental study of concrete floating slab municipal road with steel spring isolators under vehicle loads[J]. Construction and Building Materials, 2022, 315: 125686.

  51. Li X, Hu Z, Zou C*. Noise annoyance and vibration perception assessment on passengers during train operation in Guangzhou Metro[J]. Environmental Science and Pollution Research, 2022, 29(3): 4246-4259.

  52. Zou C, Moore J A, Sanayei M, et al. Efficient impedance model for the estimation of train-induced vibrations in over-track buildings[J]. Journal of Vibration and Control, 2021, 27(7-8): 924-942.

  53. He W, Zou C*, Pang Y, et al. Environmental noise and vibration characteristics of rubber-spring floating slab track[J]. Environmental Science and Pollution Research, 2021, 28: 13671-13689.

  54. 邹锦华, 李碧坤, 陈伟, 陈海斌, 黄龙田, & 邹超. 交通荷载作用下钢弹簧浮置板隔振道路设计参数研究[J]. 土木与环境工程学报 (中英文), 2020, 42(4): 124-134.

  55. Wang X, Zou C, Wang L. Analysis on the temporal distribution characteristics of air pollution and its impact on human health under the noticeable variation of residents’ travel behavior: A case of guangzhou, china[J]. International Journal of Environmental Research and Public Health, 2020, 17(14): 4947.

  56. Wang X, Zou C, Wang X, et al. Impact of vehicular exhaust emissions on pedestrian health under different traffic structures and wind speeds[J]. Human and Ecological Risk Assessment: An International Journal, 2019.

  57. Zou C, Wang Y, Zhang X, et al. Vibration isolation of over-track buildings in a metro depot by using trackside wave barriers[J]. Journal of Building Engineering, 2020, 30: 101270.

  58. He S, Fang Z, Mosallam A S, Ouyang Y, Zou C. Behavior of CFSC-encased shear connectors in steel-concrete joints: Push-out tests[J]. Journal of Structural Engineering, 2020, 146(4): 04020015.

  59. Sun X, Qin X, Liu Z, Yin Y, Zou C, Jiang S. New preparation method of bitumen samples for UV aging behavior investigation[J]. Construction and Building Materials, 2020, 233: 117278.

  60. Zou C, Zhu R, Tao Z, et al. Evaluation of building construction-induced noise and vibration impact on residents[J]. Sustainability, 2020, 12(4): 1579.

  61. Zou C, Wang Y, Tao Z. Train-induced building vibration and radiated noise by considering soil properties[J]. Sustainability, 2020, 12(3): 937.

  62. Tao Z, Wang Y, Sanayei M, James A Moore, Zou C. Experimental study of train-induced vibration in over-track buildings in a metro depot[J]. Engineering Structures, 2019, 198: 109473.

  63. Wu J, Zou C*, He S, et al. Traffic noise exposure of high-rise residential buildings in urban area[J]. Environmental Science and Pollution Research, 2019, 26: 8502-8515.

  64. Tao Z, Wang Y, Zou C*, et al. Assessment of ventilation noise impact from metro depot with over-track platform structure on workers and nearby inhabitants[J]. Environmental science and pollution research, 2019, 26: 9203-9218.

  65. Zou C, Moore J A, Sanayei M, et al. Impedance model for estimating train-induced building vibrations[J]. Engineering Structures, 2018, 172: 739-750.

  66. Sun X, Qin X, Li S, Zou C*, et al. Characterization of thermal insulating micro-surfacing modified by inorganic insulating material[J]. Construction and Building Materials, 2018, 175: 296-306.

  67. He S, Mosallam A S, Fang Z, Zou C, et al. Experimental study on CFSC encased shear connectors in steel-concrete composite joints with UHPC grout[J]. Construction and Building Materials, 2018, 173: 638-649.

  68. Wu J, Yan Q, Huang S, Zou C, et al. Finite element model updating in bridge structures using Kriging model and Latin hypercube sampling method[J]. Advances in Civil Engineering, 2018, 2018: 1-11.

  69. Yu H, Wang Y, Zou C, et al. Study on subgrade settlement characteristics after widening project of highway built on weak foundation[J]. Arabian Journal for Science and Engineering, 2017, 42: 3723-3732.

  70. Wang P, Wang Y, Zou C*, et al. A preliminary investigation of noise impact within metro stations in the urban city of Guangzhou, China[J]. Environmental Science and Pollution Research, 2017, 24: 11371-11382.

  71. Zou C, Wang Y, Moore J A, et al. Train-induced field vibration measurements of ground and over-track buildings[J]. Science of the Total Environment, 2017, 575: 1339-1351.

  72. Zou C, Wang Y, Lin J, et al. Creep behaviors and constitutive model for high density polyethylene geogrid and its application to reinforced soil retaining wall on soft soil foundation[J]. Construction and Building Materials, 2016, 114: 763-771.

  73. Zou C, Wang Y, Wang P, et al. Measurement of ground and nearby building vibration and noise induced by trains in a metro depot[J]. Science of the Total Environment, 2015, 536: 761-773.

  74. 邹超, 汪益敏, 汪朝晖, 等. 地铁车辆段咽喉区地面振动传播规律实测与分析[J]. 振动与冲击, 2015, 34(16): 200-206.


  • 授权专利及软件著作权

  1. 一种基于机器学习的隔振沟减振效果模拟与增强方法. 授权号: CN 121302500 B.

  2. 一种轨道交通的振动噪声影响智能测试方法及系统. 授权号: CN 120252940 B.

  3. 一种轨道交通运行引起的建筑结构振动超标预警计算方法. 授权号: CN 118968729 B.

  4. 一种大型综合体的振动噪声数字孪生建模方法及系统. 授权号: CN 120296981 B.

  5. 一种利用频谱特征的振动噪声智能控制方法及系统. 授权号: CN 120126435 B.

  6. 一种用于室内降低低频结构噪声的复合材料及其制备方法. 授权号: CN 118876540 B.

  7. 一种建筑隔振支座的减振测试方法及系统. 授权号: CN 120333742 B.

  8. 一种地铁上盖建筑的减振浮筑结构及施工方法. 授权号: CN 116791805 B.

  9. 一种考虑土体性质空间变化的车致基础振动概率评估方法. 授权号: CN 118780126 B.

  10. 一种列车运行引起建筑结构振动响应预测方法. 授权号: CN 118194598 B.

  11. 一种用于大型铁路客运站的蚌壳型减振降噪结构. 授权号: CN 119466168 B.

  12. 一种轻量化仿生蜘蛛车站支撑结构. 授权号: CN 119411862 B.

  13. 一种建筑室内降噪的高分子材料制备方法. 授权号: CN 119230033 B.

  14. 一种房屋建筑隔振保温墙板. 授权号: CN 119163176 B.

  15. 一种基于电磁感应的轨道减振系统及监测方法. 授权号: CN 118932797 B.

  16. 一种可调节的准零刚度减振平台. 授权号: CN 118815870 B.

  17. 一种土与独立基础结构竖向振动耦合传播损失的预测方法. 授权号: CN 117892413 B.

  18. 基于列车-轨道-路基耦合模型的扣件力模拟软件,软件著作权,2024SR0815217,2024

  19. 基于列车-轨道-轨道板耦合模型的轮轨力模拟软件,软件著作权,2024SR0813455,2024

  20. 一种应用于地铁车辆基地的非连续性隔振屏障,实用新型专利,ZL 2022 0 0273884.8, 2022

  21. 一种地铁隧道减振降噪结构及施工方法,发明专利,ZL 2019 1 0214181.0, 2020

  22. 上盖建筑结构二次噪声预测分析系统V1.0,软件著作权,2020SR0814990, 2020

  23. 地铁车辆段上盖建筑振动预测分析系统V1.0,软件著作权,2020SR0814093, 2020

  24. 一种建筑楼面轻质隔振结构,实用新型,ZL 2018 2 0044467.X, 2018

  25. 一种地铁车辆段试车线复合隔振屏障,发明专利,CN104947721B, 2017