Optimization of steel beams with external pretension, considering the environmental and financial impact

Author:

Fiorotti Kamila Madeira,Silva Gabrieli Fontes,Calenzani Adenilcia Fernanda GrobérioORCID,Alves Élcio CassimiroORCID

Publisher

Springer Science and Business Media LLC

Subject

Civil and Structural Engineering

Reference44 articles.

1. Abbas, A. L., Mohammed, A. H., & Abdul-Razzaq, K. S. (2018). Finite element analysis and optimization of steel girders with external prestressing. Civil Engineering Journal, 4(7), 1490.

2. Akbari, J., & Ayubirad, M. S. (2017). Seismic optimum design of steel structures using gradient-based and genetic algorithm methods. International Journal of Civil Engineering, 15, 135–148.

3. Arpini, P. A. T., Loureiro, M. C., Breda, B. D., Calenzani, A. F., & Alves, E. C. (2022). Optimum design of a composite floor system considering environmental and economic impacts. IBRACON Structures and Materials Journal, 15(3), e15302.

4. Associação Brasileira De Normas Técnicas (2008) NBR 8800 - Design of steel structures and composite steel and concrete structures of buildings. Rio de Janeiro [In Portuguese]

5. Aydin, Z. (2022). Size layout and tendon profile optimization of prestressed steel trusses using Jaya algorithm. Structures, 40, 284–294.

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