DETERMINATION OF STRENGTH AND ENDURANCE OF CABLE OF CABLE-STAYED BRIDGE
DOI:
https://doi.org/10.58225/sw.2025.1-125-131Keywords:
cable, tension, stress, strength, enduranceAbstract
The paper investigated the tension strain of the cable-stayed bridge. For example, the White City pedestrian crossing was taken. Calculations of the strength and endurance of cable cables were carried out. The maximum stress occurring here is calculated. It was recommended to reduce the number of baths of a pedestrian crossing exposed to high wind pressure. The bridge conditions were tested with strength, stiffness, endurance and dynamic stability calculations. The bridge deformation scheme has been removed. The stiffness of the bridge beam is impermeable. Therefore, it is necessary to increase the tension of the cranes and reduce the concrete layer falling on the transition beam.
- Views
- 242
- Downloads
- 104
References
1. Yang, F., Zhao, H., A.L., & Fang, Z. (2023). Experimental-numerical analysis on the cable vibration behavior of a long-span rail-cum-road cable-stayed bridge under the action of high-speed trains. Applied Science, 13(11082). https://doi.org/10.3390/app13111082
2. Kadisov, G.M., & Chernychev, V.V. (2011). Dynamics of a cable-stayed bridge after the cable break. Vestnik Sib. ADI, 4(22)
3. Gorelov, S.N., Zhadanov, V.I., & Arkaev, M.A. (2012). Results of numerical studies of a pedestrian cable-stayed bridge across the Ural River. Vestnik OGU, 9(145), September
4. Kozmin, N.A. (2012). On some methods of determining the regulation forces in cable-beam bridges. Vestnik SGUPS, 28
5. Jakiel, P., & Marico, Z. (2017). Estimation of cable tension of a cable-stayed footbridge using measured natural frequencies. MATEC Web of Conferences, 107, 00006. https://doi.org/10.1051/matecconf/201710700006
6. Dehghani, H., Dehghani, E., Sharifi, M., & Vaer, S.R. (2024). Effect of initial cable tension on cable-stayed bridge performance and a new construction method. Journal of Rehabilitation in Civil Engineering, 12(4), 136-154
7. AzDTN 2.1-1. (2015). Loads and effects. Baku.
8. Baku White City pedestrian bridge. (2022). Azerbaijan Structure Design Report. CD-00 Superstructure design report. UN studio, Stuttgart
9. AzDTN 2.05.03.84. (2011). Bridges and pipes. Baku.
10. Papadopolus, P.G., Arethas, J., & Lazaridis, P. (2005). Numerical study on the behavior of cables of cable-stayed bridges. Earthquake Resistant Engineering. WIT Transaction on the Built Environment, 81
Published
Issue
Section
License
Copyright (c) 2025 Mastanzadeh Nijat , Rustamli Tural, Mehtiyev Yagub (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.


