近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
1. Yang, Y. B., Wang, Z. L.*, Yao, H., Zhang, B., Xu, H., & Shi, K. (2023). Weak-End and Frequency Detection of Elastically Supported Bridges by Contact Residual Response of Two-Axle Test Vehicle in a Round Trip. Journal of Bridge Engineering, 28(3), 060236001.
2. Z.L. Wang, Z. X. Tan, D.S. Yang*, H. Xu, K. Shi, Y.B. Yang*, Internal and External Cancellation Conditions for Free Vibration of Damped Simple Beams Traversed by Successive Moving Loads, IJSSD, Online ready.
3. Yang, Y. B., Li, Z.*, Wang, Z. L.*, Liu, Z., Mo, X. Q., & Qiu, F. Q. (2023). Closely spaced modes of bridges estimated by a hybrid time–frequency method using a multi-sensor scanning vehicle: Theory and practice. Mechanical Systems and Signal Processing, 192, 110236.
4. Wang Z.L., Z.X. Tan, H. Yao, K. Shi, H. Xu, Y.B. Yang. * (2022) Effect of Soft-End Amplification on Elastically Supported Bridges with Bearings of Unequal Stiffnesses Scanned by Moving Test Vehicle, Journal of Sound and Vibration, 540(8): 117308.
5. Wang, Z. L., Yang, J. P. *, Shi, K., Xu, H., Qiu, F. Q., & Yang, Y. B. * (2022). Recent Advances in Researches on Vehicle Scanning Method for Bridges. International Journal of Structural Stability and Dynamics. Vol. 22, No. 15 (2022) 2230005 (ESI高被引论文)
6. Yang, Y. B., Wang, B.Q., Wang, Z. L.*, Shi, K., & Xu, H. (2022). Scanning of Bridge Surface Roughness from Two-Axle Vehicle Response by EKF-UI and Contact Residual: Theoretical Study. Sensors, 22(9), 3410.
7. Yang, Y. B., Li, Z., Wang, Z. L.*, Shi, K., Xu, H., Qiu, F. Q., & Zhu, J. F. (2022). A novel frequency-free movable test vehicle for retrieving modal parameters of bridges: Theory and experiment. Mechanical Systems and Signal Processing, 170, 108854.
8. Yang, Y. B., Wang, Z. L.*, Shi, K., Xu, H., & Yang, J. P. (2021). Adaptive amplifier for a test vehicle moving over bridges: theoretical study. International Journal of Structural Stability and Dynamics, 21(03), 2150042.
9. Yang, Y. B., Wang, Z. L.*, Shi, K., et al. (2020). Two-axle test vehicle for damage detection for railway tracks modeled as simply supported beams with elastic foundation. Engineering Structures, 219, 110908.
10. Yang, Y. B., Wang, Z. L., Shi, K. *, Xu, H., & Wu, Y. T. (2020). State-of-the-art of vehicle-based methods for detecting various properties of highway bridges and railway tracks. International Journal of Structural Stability and Dynamics, 20(13), 2041004. (注:导师一作本人二作)
11. Yang, Y. B., Wang, Z. L.*, Wang, B. Q., & Xu, H. (2020). Track modulus detection by vehicle scanning method. Acta Mechanica, 231, 2955–2978. (IF: 2.645, Q2)
12. Yang, Y. B., Xiong, F., Wang, Z. L.*, & Xu, H. (2020). Extraction of bridge frequencies inclusive of the higher modes by the ESMD using the contact-point response. International Journal of Structural Stability and Dynamics, 20(04), 2050045.
13. Yang, Y. B., Wang, B. Q., Wang, Z. L.*, Shi, K., Xu, H., Zhang, B., & Wu, Y. T. (2020). Bridge surface roughness identified from the displacement influence lines of the contact points by two connected vehicles. International Journal of Structural Stability and Dynamics, 20(14), 2043003.
14. Wang, Z. L.; Xu, Y. L.*; Li, G. Q.; Chen S.W. (2019). Optimization of horizontally curved track in the alignment design of a high-speed maglev line, Structure and Infrastructure Engineering, 16(7): 880-897.
15. Xu, Y. L., Wang, Z. L., Li, G. Q., Chen S.W., Yang, Y. B.*(2019) High-speed running maglev trains interacting with elastic transitional viaducts, Engineering Structures, 183: 562-578. (注:导师一作本人二作)
16. Wang, Z. L., Xu, Y. L. *, Li, G. Q., Yang, Y. B., Chen, S. W. (2019). Modelling and validation of coupled high-speed maglev train-and-viaduct systems considering support flexibility. Vehicle System Dynamics, 57(2), 161-191.
17. Wang, Z. L., Xu, Y. L. *, Li, G. Q., Chen, S.W., & Zhang, X. L. (2018). Dynamic analysis of a coupled system of high-speed maglev train and curved viaduct. International Journal of Structural Stability and Dynamics, 18(11), 1850143.
18. Li G. Q., Wang Z. L., Chen S.W.*, Xu Y. L. (2016). Field measurements and analyses of environmental vibrations induced by high-speed Maglev. Science of the Total Environment, 568, 1295–1307. (注:导师一作本人二作)
19. 杨永斌,王志鲁*,史康,徐昊.基于车辆响应的桥梁间接测量与监测研究.中国公路学报,2021,34(04):1-12.
20. 王志鲁;杨永斌*;姚华;李智.不等支承刚度条件下桥梁—车辆动力耦合解析理论及应用.中国公路学报,2023,36(03):165-176.