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Aerodynamic stability of cable-stayed bridges under erection

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Abstract

In this work, nonlinear multimode aerodynamic analysis of the Jingsha Bridge under erection over the Yangtze River is conducted, and the evolutions of structural dynamic characteristics and the aerodynamic stability with erection are numerically generated. Instead of the simplified method, nonlinear multimode aerodynamic analysis is suggested to predict the aerodynamic stability of cable-stayed bridges under erection. The analysis showed that the aerodynamic stability maximizes at the relatively early stages, and decreases as the erection proceeds. The removal of the temporary piers in side spans and linking of the main girder to the anchor piers have important influence on the dynamic characteristics and aerodynamic stability of cable-stayed bridges under erection.

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References

  • Cobo del Arco, D., 2001. Improving the wind stability of suspension bridges during construction.J Struct Engrg, ASCE,127 (8): 869–875.

    Article  Google Scholar 

  • Ge, Y.J., Tanaka, H., 2000a. Aerodynamic flutter analysis of cable-supported bridges by multi-mode and full-mode approaches.J Wind Engrg Indust Aerodyn,86: 125–153.

    Google Scholar 

  • Ge, Y.J., Tanaka, H., 2000b. Aerodynamic stability of long-span suspension bridges under erection.J Struct Engrg, ASCE,126 (12): 1404–1412.

    Article  Google Scholar 

  • Jain, A., Jones, N.P., Scanlan, R.H., 1996. Coupled aeroelastic and aerodynamic response analysis of long-span bridge.J Wind Engrg Indust Aerodyn,60: 69–80.

    Article  Google Scholar 

  • Larsen, A., 1995. Prediction of Aeroelastic Stability of Suspension Bridges during Erection. Proceeding of 9th International Conference on Wind Engineering, New Delhi, p.917–927.

  • Namini, A.H., 1992. Finite element-based aerodynamic analysis of cable-suspended bridge.J Struct Engrg, ASCE,118 (6): 1509–1526.

    Article  Google Scholar 

  • Scanlan, R.H., Jones, N.P., 1990. Aeroelastic analysis of cable-stayed bridges.J Struct Engrg, ASCE,116 (2): 279–297.

    Article  Google Scholar 

  • Song, J.Z., 1998. Wind-resistant Research on the Jingsha Bridge over the Yangtze River. Research report, State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University, Shanghai (in Chinese).

    Google Scholar 

  • Tanaka, H. 1998. Aerodynamics of Long-span Bridges during Erection.In: Larsen, A., Esdah, S. (Eds.), Bridge Aerodymics. Balkema, Rotterdam, p. 119–127.

    Google Scholar 

  • Xiang, H.F., 1999. Experimental Study on the Aerodynamic Parameters of Typical Deck Sections. Research report, State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University, Shanghai (in Chinese).

    Google Scholar 

  • Zhang, X.J., Sun, B.N., Xiang, H.F., 2002. Nonlinear aerostatic and aerodynamic analysis of long-span suspension bridges considering wind-structure interactions.J Wind Engrg Indust Aerodyn,90 (9): 1065–1080.

    Article  Google Scholar 

  • Zhang, X.J., Sun, B.N., Peng, W., 2003a. Study on flutter characteristics of cable-supported bridges.J Wind Engrg Indust Aerodyn,91 (6): 841–854.

    Article  Google Scholar 

  • Zhang, X.J., Sun, B.N., Xiang, H.F., 2003b. Three-dimensional nonlinear flutter analysis of long-span suspension bridges during erection.Journal of Zhejiang University SCIENCE,4 (1): 21–27.

    Article  MathSciNet  Google Scholar 

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Correspondence to Zhang Xin-jun.

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Project supported by China Postdoctoral Science Foundation (No. 2002031245), and the Natural Science Foundation of Zhejiang Province (No. 502118), China

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Xin-jun, Z., Bing-nan, S. & Hai-fan, X. Aerodynamic stability of cable-stayed bridges under erection. J. Zheijang Univ.-Sci. A 6, 175–180 (2005). https://doi.org/10.1631/BF02872316

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  • DOI: https://doi.org/10.1631/BF02872316

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