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Published in: International Journal of Steel Structures 1/2024

09-01-2024

Research on Vehicle-Induced Vibration of Pedestrian Bridge and Its Application in Comfort Evaluation

Authors: Rui Zhao, Yuhang Wu, Danhui Dan

Published in: International Journal of Steel Structures | Issue 1/2024

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Abstract

The vibration responses of pedestrian bridges are mainly caused by two transmission routes of ground and airflow under vehicle excitation. In order to clarify the action mechanism and influence degree of ground excitation and airflow excitation on pedestrian bridges, based on stochastic theory and flow field analysis method, the calculation models of vehicle-induced ground excitation and airflow excitation considering the influence of vehicle length, vehicle width and bridge deck width are established respectively. Considering the effects of vehicle speed, road grade, and vehicle mass, the vibration response of a continuous steel box girder pedestrian bridge under the two transmission routes was analyzed in this study. The laws of vibration acceleration and stress were summarized, and the accuracy of the finite element model and the laws were verified by field-measured data. Results show that road grade and vehicle mass are the main factors causing the vibrations of pedestrian bridges under vehicle excitation. Vehicle speed has a great influence on structural vibration under airflow excitation. The vibration response is the largest at mid-span along the pedestrian bridge-length direction. When the vehicle speed is less than about 60 km/h, the influence of the airflow excitation on the structure may not be considered. On this basis, the comfort level of the pedestrian bridge was evaluated using the British Standards Institution. The given evaluation criteria of the pedestrian bridge complement the design regulations of the pedestrian bridge.

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Literature
go back to reference AQSIQ. and SAC. (2005). Mechanical vibration-Road surface profiles-Reporting of measured data (GB/T 7031–2005) (pp. 17–18). China Standard Press. AQSIQ. and SAC. (2005). Mechanical vibration-Road surface profiles-Reporting of measured data (GB/T 7031–2005) (pp. 17–18). China Standard Press.
go back to reference Gu, X. L., Qian, H. J., Liu, H. S., & Wang, S. M. (2003). Foundation and foundation (3rd Edition) (pp. 397–402). China Industrial Construction Press. Gu, X. L., Qian, H. J., Liu, H. S., & Wang, S. M. (2003). Foundation and foundation (3rd Edition) (pp. 397–402). China Industrial Construction Press.
go back to reference Jiang, L., Liu, J., Li, S. J., & Chen, X. X. (2014). Analysis on vibration responses of footbridge induced by wind caused of main line train pass by. Journal of Wuhan University of Technology, 36(6), 79–83. Jiang, L., Liu, J., Li, S. J., & Chen, X. X. (2014). Analysis on vibration responses of footbridge induced by wind caused of main line train pass by. Journal of Wuhan University of Technology, 36(6), 79–83.
go back to reference Lai, S. P., & He, W. J. (2018). Analysis of vibration comfort of long span pedestrian bridge. Building Structure, 48(18), 48–52.ADS Lai, S. P., & He, W. J. (2018). Analysis of vibration comfort of long span pedestrian bridge. Building Structure, 48(18), 48–52.ADS
go back to reference Liu, S. Y., Zhang, X. F., Zhang, B., & Ding, Y. P. (2018). Detection and analysis of structural performance of steel bridge girder of a pedestrian bridge. Journal of Xihua University (natural Science Edition), 37(6), 67–72. Liu, S. Y., Zhang, X. F., Zhang, B., & Ding, Y. P. (2018). Detection and analysis of structural performance of steel bridge girder of a pedestrian bridge. Journal of Xihua University (natural Science Edition), 37(6), 67–72.
go back to reference Ministry of Machinery Industry of the P. R. China. (1996). Power Machine Basic Design Specification (GB50040-96) (p. 70). China Planning Press. Ministry of Machinery Industry of the P. R. China. (1996). Power Machine Basic Design Specification (GB50040-96) (p. 70). China Planning Press.
go back to reference MOC. (2006). Urban Road Traffic Planning and Design Specification (GB 50220-95). China Planning Press, Beijing, pp. 3. MOC. (2006). Urban Road Traffic Planning and Design Specification (GB 50220-95). China Planning Press, Beijing, pp. 3.
go back to reference Song, Y. F., & Chen, Y. F. (2007). Analysis method of vehicle vibration response based on road surface roughness. Journal of Traffic and Transportation Engineering, 7(4), 39–43. Song, Y. F., & Chen, Y. F. (2007). Analysis method of vehicle vibration response based on road surface roughness. Journal of Traffic and Transportation Engineering, 7(4), 39–43.
go back to reference Wang, W. A., Qin, S. M., Li, B., & Tan, S. K. (2018). Study on human-induced vibration comfort of long span steel box girder flyover. Southwest Highway, No., 3, 35–38. Wang, W. A., Qin, S. M., Li, B., & Tan, S. K. (2018). Study on human-induced vibration comfort of long span steel box girder flyover. Southwest Highway, No., 3, 35–38.
go back to reference Xia, H., & Zhang, N. (2005). Dynamic interaction between vehicles and structures (2nd edition) (pp. 119–124). Science Press. Xia, H., & Zhang, N. (2005). Dynamic interaction between vehicles and structures (2nd edition) (pp. 119–124). Science Press.
go back to reference Yang, N., Wang, M., & Zhang, S. (2016). “Vehicle-induced vibration response analysis and comfort evaluation of “building-bridge integration” structure. Journal of Hunan University (Natural Sciences), Hunan University, 43(7), 96–104. Yang, N., Wang, M., & Zhang, S. (2016). “Vehicle-induced vibration response analysis and comfort evaluation of “building-bridge integration” structure. Journal of Hunan University (Natural Sciences), Hunan University, 43(7), 96–104.
go back to reference Yang, W. (2005). Discussion on dynamic characteristics of steel structure pedestrian bridge. Journal of Highway and Transportation Research and Development, pp. 95–99. Yang, W. (2005). Discussion on dynamic characteristics of steel structure pedestrian bridge. Journal of Highway and Transportation Research and Development, pp. 95–99.
go back to reference Zhai, W. M. (2001). Vehicle-track coupling dynamics (p. 207). China Railway Press. Zhai, W. M. (2001). Vehicle-track coupling dynamics (p. 207). China Railway Press.
go back to reference Zhang, G. H., & Ge, Y. J. (2009). Vibration characteristics test and analysis on concrete box girder continuous pedestrian bridge. Journal of Vibration and Shock, 28(2), 102–106.ADS Zhang, G. H., & Ge, Y. J. (2009). Vibration characteristics test and analysis on concrete box girder continuous pedestrian bridge. Journal of Vibration and Shock, 28(2), 102–106.ADS
go back to reference Zhao, R., & Zhang, Y. G. (2015). Calculation method of vehicle-induced ground vibration attenuation. Journal of Vibration Measurement & Diagnosis, 35(2), 295–301.MathSciNet Zhao, R., & Zhang, Y. G. (2015). Calculation method of vehicle-induced ground vibration attenuation. Journal of Vibration Measurement & Diagnosis, 35(2), 295–301.MathSciNet
go back to reference Zhao, R., & Zhang, Y. G. (2016). Parametric analysis of simplified algorithm of vehicle-induced airflow excitation. Building Structure, 46(7), 93–98. Zhao, R., & Zhang, Y. G. (2016). Parametric analysis of simplified algorithm of vehicle-induced airflow excitation. Building Structure, 46(7), 93–98.
go back to reference Zhou, G. L., Li, X. J., & Yu, T. (2010). Applicability research on base excitation models used in structural seismic response analysis. Journal of Building Structures, 31(Suppl 2), 82–88. Zhou, G. L., Li, X. J., & Yu, T. (2010). Applicability research on base excitation models used in structural seismic response analysis. Journal of Building Structures, 31(Suppl 2), 82–88.
go back to reference Żoitowski, P., Piechna, J., Żoitowski, K., & Zobel, H. (2006). Analysis of dynamic loads on lightweight footbridge caused by lorry passing underneath. Bulletin of the Polish Academy of Sciences: Technical Sciences, Polish Academy of Sciences, 54(1), 33–44. Żoitowski, P., Piechna, J., Żoitowski, K., & Zobel, H. (2006). Analysis of dynamic loads on lightweight footbridge caused by lorry passing underneath. Bulletin of the Polish Academy of Sciences: Technical Sciences, Polish Academy of Sciences, 54(1), 33–44.
Metadata
Title
Research on Vehicle-Induced Vibration of Pedestrian Bridge and Its Application in Comfort Evaluation
Authors
Rui Zhao
Yuhang Wu
Danhui Dan
Publication date
09-01-2024
Publisher
Springer Netherlands
Published in
International Journal of Steel Structures / Issue 1/2024
Print ISSN: 1598-2351
Electronic ISSN: 2093-6311
DOI
https://doi.org/10.1007/s13296-023-00798-0

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