References
- Bachmann, H. (1995), Vibration Problems in Structures: Practical Guidelines, Birkhauser, Basel, Boston, Berlin.
- Biliszczuk, J. and Barcik, W. (2006), "Mosty podwieszone w Polsce: Historia, stan obecny i perspektywy rozwoju", Geoinzynieria: Drogi, Mosty, Tunele, 4, 60-65.
- Biliszczuk, J., Machelski, C., Onysyk, J., Wegrzyniak, M. and Prabucki, P. (2011), "Kladki dla pieszych jako punkty orientacyjne na autostradzie, Inzynieria i Budownictwo, 57(11), 643-648.
- Biliszczuk, J., Machelski, C., Onysyk, J., Sadowski, K. and Szczepanski, J. (2001), "Kladka dla pieszych o stalowej konstrukcji podwieszonej w kielcach", Inzynieria i Budownictwo, 57(9), 498-501.
- Caicedo, J.M., Dyke, S.J., Moon, S.J., Bergman, L.A., Turan, G. and Hague, S. (2003), "Phase II benchmark control problem for seismic response of cable-stayed bridges", Struct. Contr. Health Monitor., 10(3-4), 137-168.
- Chen, Z., Cao, H. and Zhu, H. (2013), "An iterative calculation method for suspension bridge's cable system based on exact catenary theory", Baltic J. Road Bridge Eng., 8(3), 196-204. https://doi.org/10.3846/bjrbe.2013.25
- Dyke, S.J., Caicedo, J.M., Turan, G., Bergman, L.A. and Hague, S. (2003), "Phase I benchmark control problem for seismic response of cable-stayed Bridges", J. Struct. Eng., 129(7), 857-872. https://doi.org/10.1061/(ASCE)0733-9445(2003)129:7(857)
- Fuzier, J.P. and Lacroix, R. (1995), "Surveillance programme for stay cables (example of Normandy bridge)", Proceedings of the Extending the Lifespan of Structures, IABSE Symposium, San Francisco, U.S.A., August.
- Glowczak, W. (2003), "Wiszace i Podwieszone Kladki w Poludniowej Malopolsce. Monografia. Projektowanie, Budowa i Estetyka Kladek Dla Pieszych", Wydawnictwo Katedry Budowy Mostow i Tuneli Politechniki Krakowskiej, Krakow, Poland.
- Janjic, D., Pircher, M. and Pircher H. (2003), "Optimization of cable tensioning in cable-stayed bridges, J. Bridge Eng., 8(3), 131-137. https://doi.org/10.1061/(ASCE)1084-0702(2003)8:3(131)
- Juozapaitis, A., Kliukas, R., Sandovic, G., Lukoseviciene, O. and Merkevicius, T. (2013), "Analysis of modern three-span suspension bridges with stiff in bending cables", Baltic J. Road Bridge Eng., 8(3), 205-211. https://doi.org/10.3846/bjrbe.2013.26
- Kiisa, M., Idnurm, J. and Idnurm, S. (2012), "Discrete analysis of elastic cables", Baltic J. Road Bridge Eng., 7(2), 98-103. https://doi.org/10.3846/bjrbe.2012.14
- Kossakowski, P.G. (2012), "The numerical modeling of failure of S235JR steel using gurson-tvergaard-Needleman material model", Roads and Bridges, 11(4), 295-310.
- Kossakowski, P.G. (2013), "Fatigue strength of an over one hundred year old railway bridge", Baltic J. Road Bridge Eng., 8(3), 166-173. https://doi.org/10.3846/bjrbe.2013.21
- Kossakowski, P.G. (2014), "Stress Modified Critical Strain criterion for S235JR steel at low initial stress triaxiality", J. Theoret. Appl. Mech., 52(4), 995-1006.
- Kossakowski, P.G. (2015), "Microstructural failure criteria for S235JR steel subjected to spatial stress states", Arch. Civil Mech. Eng., 15(1), 195-205. https://doi.org/10.1016/j.acme.2014.02.008
- Lozano-Galant, J.A., Ruiz-Ripoll, L., Paya-Zaforteza, I. and Turmo, J. (2014), "Modifications of the stress-state of cable-stayed bridges due to staggered construction of their superstructure", Baltic J. Road Bridge Eng., 9(4), 241-250. https://doi.org/10.3846/bjrbe.2014.30
- Nazarian, E., Ansari, F., Zhang, X. and Taylor, T. (2016), "Detection of tension loss in cables of cable-stayed bridges by distributed monitoring of bridge deck strains", J. Struct. Eng., 142(6), 04016018.
- PN-82/S-10052 (1982), Bridges-Steel structures-Design.
- PN-85/S-10030 (1985), Bridges-Loads.
- PN-90/B-03000 (1990), Building Design-Static Calculations.
- PN-EN 10025-2 (2007), Hot Rolled Products of Structural Steels-Part 2: Technical Delivery Conditions for Non-Alloy Structural Steels.
- Post-Tensioning Institute (2001), Recommendations for Stay Cable Design, Testing and Installation. PTI Guide Specification, 4th Edition, PTI, Phoenix, AZ, U.S.A.
- PrEN 10138-3 (2000), Prestressing Steels-Part 3: Strand.
- Recupero, A. and Granata, M.F. (2015), "A mixed approach for determination of initial cable forces in cable-stayed bridges and the parameters variability", Baltic J. Road Bridge Eng., 10(2), 141-150. https://doi.org/10.3846/bjrbe.2015.18
- Serdjuks, D., Rocens, K. and Pakrastins, L. (2008), "Hybride composite cable with an increased specific strength for tension structures", Baltic J. Road Bridge Eng., 3(3), 129-136. https://doi.org/10.3846/1822-427X.2008.3.129-136
- Setra (2002), Cable Stays: Recommendations of French Interministerial Commission on Prestressing, Setra, Bagneux Cedex, France.
- Straupe, V. and Paeglitis, A. (2012), "Analysis of interaction between the elements in cable-stayed bridge", Baltic J. Road Bridge Eng., 8(2), 84-91.
- Straupe, V. and Paeglitis, A. (2013), "Analysis of geometrical and mechanical properties of cable-stayed bridge", Proc. Eng., 57, 1086-1093. https://doi.org/10.1016/j.proeng.2013.04.137
- Sun, Z.K., Li, G.M. and Geng, S.H. (2013), Study on Stayed-Cable Health Monitoring, Springer, Berlin, Heidelberg, Germany.
- Vejrum, T. and Nielsen, L.L. (2014), Cable-Stayed Bridges, CRC Press, Boca Raton, London, New York.
- VSL International (1984), VSL Stay Cables for Cable-Bridges, VSL International Ltd., Berne, Switzerland.
- Wang, P.H., Tseng, T.C. and Zheng, H.N. (2004), "Analysis of cable-stayed bridges during construction by cantilever methods", Comput. Struct., 82(4-5), 329-346. https://doi.org/10.1016/j.compstruc.2003.11.003