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Optimum design of cable-stayed bridges considering cable failure

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SotoMendezN_2022_Optimum-design_WTotBE-209_47-56.pdf (862.6Kb)
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http://hdl.handle.net/2183/37108
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  • Investigación (ETSECCP) [827]
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Título
Optimum design of cable-stayed bridges considering cable failure
Autor(es)
Soto Méndez, Noel
Cid, Clara
Baldomir, Aitor
Hernández, Santiago
Data
2022
Cita bibliográfica
Soto, N., Cid, C., Baldomir, A., Hernández, S. (2022). Optimum design of cable-stayed bridges considering cable failure. WIT Transactions on the Built Environment, 209, 47-56. https://doi.org/10.2495/HPSU220051
Resumo
[Abstract:] A methodology to obtain the minimum weight of cables in cable-stayed bridges when a cable fails has been developed. To this end, a multi-model strategy is proposed that takes into account design constraints in both the intact and damaged models. The dynamic effect of the cable breakage is considered by the application of impact loads at the tower and deck anchorages. The methodology is applied to the Queensferry Crossing Bridge, a multi-span cable-stayed bridge with cross stay cables in the central section of each main span. The number of cables, anchorage position on the deck, cable areas and prestressing forces are considered as design variables into the optimization process simultaneously. The fail-safe optimum design results in a different cable layout than the optimized design of the intact structure, with minimum volume increase.
Palabras chave
Cable-stayed bridge
Optimum design
Fail-safe
Cable rupture
Cable breakage
Cable system
Cable arrangement
Cable layout
 
Versión do editor
https://doi.org/10.2495/HPSU220051

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