Please use this identifier to cite or link to this item: http://hdl.handle.net/10362/83618
Title: Application of geometrically exact beam finite elements in the advanced analysis of steel and steel-concrete beam-columns
Author: Gonçalves, Rodrigo
Carvalho, Guilherme
Silveira, José Tomás
Sousa, Manuel
Keywords: Civil and Structural Engineering
Building and Construction
Issue Date: 2019
Publisher: Structural Stability Research Council (SSRC)
Citation: Gonçalves, R., Carvalho, G., Silveira, J. T., & Sousa, M. (2019). Application of geometrically exact beam finite elements in the advanced analysis of steel and steel-concrete beam-columns. In Structural Stability Research Council Annual Stability Conference 2019, SSRC 2019 (Vol. 1, pp. 196-213). Structural Stability Research Council (SSRC).
Abstract: This paper aims at showing the potential of geometrically exact beam finite elements to assess, accurately, the non-linear behavior of steel and steel-concrete composite beam-columns. First, one discusses the formulation and implementation aspects of 2D/3D geometrically exact beam finite elements, including geometric imperfections, residual stresses and material non-linear laws for both steel and concrete. Then, a set of numerical examples is provided, to demonstrate the capabilities of the proposed finite elements. Finally, the finite elements are employed to investigate: (i) the buckling behavior of concrete encased steel I-section beam-columns and (ii) the lateral-torsional buckling behavior of wide flange steel I section beams. The results obtained are then compared with the buckling loads provided by Eurocodes 3 (steel) and 4 (steel-concrete) and relevant conclusions/recommendations are drawn.
Peer review: yes
URI: http://www.scopus.com/inward/record.url?scp=85070829532&partnerID=8YFLogxK
ISBN: 9781510884465
Appears in Collections:FCT: DEC - Documentos de conferências internacionais



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