Cable-stayed bridges, diagnostic survey of stays
References
- Klusáček, L., Nečas, R., Koláček, J., Svoboda, A., & Olšák, M. (2020, December). Diagnostický průzkum závěsů mostu s ověřením rektifikace [Diagnostic survey of bridge stayes with rectification verification]. In 27. Betonářské dny 2020: Sborník příspěvků [Proceedings of the 27th Concrete Days 2020]. Prague, Czech Republic. ISBN 978-80-907611-3-1.
- Nečas, R., Klusáček, L., Koláček, J., Svoboda, A., & Olšák, M. (2021, September). Diagnostický průzkum lanových závěsů [Diagnostic survey of stayes]. In 26. Mezinárodní sympozium MOSTY/BRIDGES 2021: Sborník příspěvků [Proceedings of the 26th International Symposium Bridges 2021] (pp. 169–175). Brno, Czech Republic. ISBN 978-80-86604-86-2.
- Klusáček, L., et al. (2020, March). Most ev. č. 01873-1 přes Rožnovskou Bečvu před obcí Hrachovec: Diagnostický průzkum mostu a ověření rektifikace závěsů [Bridge No. 01873-1 over the Rožnovská Bečva near Hrachovec: Diagnostic survey and rectification verification]. Brno, Czech Republic.
- Klusáček, L., et al. (2020, August). Diagnostický průzkum závěsů mostu přes Labe u Poděbrad [Diagnostic survey of bridge stayes over the Elbe River near Poděbrady]. Brno, Czech Republic.
- Klusáček, L., et al. (2025, June). Diagnostika mostu odd. JEDU II/416, most 416-013 přes Svratku v Židlochovicích [Bridge diagnostics section JEDU II/416, Bridge 416-013 over the Svratka River in Židlochovice]. Brno, Czech Republic.
- Al-Khateeb, H., Dębski, H., & Katzer, J. (2019). Structural health monitoring of a cable-stayed bridge using regularly conducted diagnostic load tests. Frontiers in Built Environment, 5, 41.
https://doi.org/10.3389/fbuil.2019.00041 - Geier, R., De Roeck, G., & Pety, J. (2005). Cable force determination for the Danube Channel Bridge in Vienna. Structural Engineering International, 15(3), 198–203.
https://doi.org/10.2749/101686605777963729 - Innocenzi, R. D., Foti, F., Bellagamba, I., & Malerba, P. G. (2022). A good practice for the proof testing of cable-stayed bridges (static and dynamic tests). Applied Sciences, 12(7), 3547.
https://doi.org/10.3390/app12073547 - Kong, X., Wang, Y., Zhang, L., & Li, J. (2024). Recent advances on inspection, monitoring, and assessment of bridge cables: A review. Automation in Construction, 163, 105093.
https://doi.org/10.1016/j.autcon.2024.105093 - Nazarian, E., Hoult, N. A., & Scott, A. (2016). Detection of tension loss in cables of cable-stayed bridges by distributed monitoring of bridge deck strains. Journal of Bridge Engineering, 21(2), 04015053.
https://doi.org/10.1061/(ASCE)BE.1943-5592.0000788 - Teichgräber, M. (2024). Reliability and durability assessment of bridge stay cables. Innovative Infrastructure Solutions, 9, 234.
https://doi.org/10.1007/s41062-024-01348-3 - Yee, M., Yahng, Y., & Cho, S. (2023). Inspection for voids in the grout below the protective duct of an external post-tensioning bridge tendon using a THz A-scanner. Applied Sciences, 13(22), 12119.
https://doi.org/10.3390/app132212119 - Zhang, L. (2021). Structural health monitoring methods of cables in cable-stayed bridges: A review. Measurement, 173, 108518.
https://doi.org/10.1016/j.measurement.2020.108518 - Nečas, M. (2010). Měření napětí v táhlech pomocí vlastních frekvencí [Measurement of tension in ties using natural frequencies] (Bachelor's thesis). Faculty of Electrical Engineering, Czech Technical University in Prague.
Language: English
Page range: 332 - 345
Submitted on: Aug 14, 2025
Accepted on: Sep 25, 2025
Published on: Mar 24, 2026
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
Keywords:
Related subjects:
© 2026 Ladislav Klusáček, Radim Nečas, Jan Koláček, Kristína Bezručová, Martina Vašinová, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.
