References
- AASHTO (2004), LRFD Bridge Design Specifications, American Association of State Highway and Transportation Officials, Third Edition
- Adeli, H. and Zhang, J. (1995), 'Fully nonlinear analysis of composite girder cable-stayed bridges', Comput. Struct., 54(2), 267-277 https://doi.org/10.1016/0045-7949(94)00332-W
- Engesser, F. (1889) 'Ueber die Knickfestigkeit Gerader Stabe', Zeitschrift fur Architektur und Ingenieurwesen. 35, 455 (in German)
- Ermopoulos, J.C., Vlahino, A.S. and Wang, Y.C. (1992), 'Stability analysis of cable-stayed bridges', Comput. Struct., 44(5), 1083-1089 https://doi.org/10.1016/0045-7949(92)90331-S
- Ernst, J.H. (1965), 'Der E-Modul von seilen unter berucksichtigung des Durchanges', Der Bauingenieur, 40(2), 52-55 (in German)
- George, H.W. (1999), 'Influence of deck material on response of cable-stayed bridges to live loads', J. Bridge Eng., ASCE, 4(2), 136-142 https://doi.org/10.1061/(ASCE)1084-0702(1999)4:2(136)
- Gimsing, N.J. (1983), Cable-Supported Bridges, Concept and Design. Wiley, Chichester
-
Iwasaki, H., Nogami, K. and Nagai, M. (2001), 'Precision of
$E_{f}$ method for evaluating load-carrying capacity of long-span cable-stayed bridges and its ultimate strength check', IABSE Conference, IABSE reports, Seoul, 84, 110-111 - Kanok-Nukulchai, W. and Hong, G. (1993), 'Nonlinear modelling of cable-stayed bridges', J. Constr. Steel Res., 26(2/3), 249-266 https://doi.org/10.1016/0143-974X(93)90039-U
- Karoumi, R. (1999), 'Some modeling aspects in the nonlinear finite element analysis of cable-supported bridges', Comput. Struct., 71, 397-412 https://doi.org/10.1016/S0045-7949(98)00244-2
- Mcguire, W., Gallagher, R.H. and Ziemian, R.D. (2000), Matrix Structural Analysis, 2nd Edition, John Wiley & Sons, New York
- Nagai, M., Fujino, Y., Yamaguchi, H. and Iwasaki, E. (2004), 'Feasibility of a 1400 m span steel cable-stayed bridge', J. Bridge Eng., ASCE, 9(5), 444-452 https://doi.org/10.1061/(ASCE)1084-0702(2004)9:5(444)
- Poldony, W.J. and Scalzi, J.B. (1976), Construction and Design of Cable-Stayed Bridge. Wiley, New York
- Ren, W.X. (1999), 'Ultimate behavior of long-span cable-stayed bridges', J. Bridge Eng., ASCE, 4(1), 30-37 https://doi.org/10.1061/(ASCE)1084-0702(1999)4:1(30)
- Shu, H.S. and Wang, Y.C. (2001), 'Stability analysis of box-girder cable-stayed bridges', J. Bridge Eng., ASCE, 6(1), 63-68 https://doi.org/10.1061/(ASCE)1084-0702(2001)6:1(63)
- Tang, M.C. (1976), 'Buckling of cable-stayed bridges', J. Struct. Div., ASCE, 102(9), 1675-1684
- Wang, Y.C. (1999), 'Number of cable effects on buckling analysis of cable-stayed bridges', J. Bridge Eng., ASCE, 4(4), 242-248 https://doi.org/10.1061/(ASCE)1084-0702(1999)4:4(242)
- Wang, P.H., Lin, H.T. and Tang, T.Y. (2002), 'Study on nonlinear analysis of a highly redundant cable-stayed bridge', Comput. Struct., 80, 165-182 https://doi.org/10.1016/S0045-7949(01)00166-3
- Xi, Y. and Kuang, J.S. (2000), 'An energy approach for geometrically non-linear analysis of cable-stayed bridges', Proc. of the Institution of Civil Engineers-Structures and Buildings, 140, 227-237
- Xi, Y. and Kuang, J.S. (1999), 'Ultimate load capacity of cable-stayed bridges', J. Bridge Eng., ASCE, 4(1), 14-22 https://doi.org/10.1061/(ASCE)1084-0702(1999)4:1(14)
- Yang, Y.B. and Kuo, S.R. (1994), Theory and Analysis of Framed Structures, Prentice Hall, Singapore
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