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Published: Građevinar 77 (2025) 9
Paper type: Scientific research paper
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technique incorporating torsional vibration modes

Soumia Aouissi, Mouloud Ouanani, Khaled Sandjak, Amar Louzai

Abstract

This paper presents the results of numerical investigations on seismic modification factors (R) for algerian box girder bridges (BGBs) with both equal and unequal pier heights, using a proposed pushover technique that incorporates torsional vibration modes. In the first part, the BGB referenced in a project by the Algerian Highway National Agency is selected to evaluate the components of the R-factor in the transverse direction. Conventional pushover analysis (CPA), employing the elastic first mode, uniform, and upper-bound lateral load patterns, as well as the proposed pushover technique, is conducted. The results of CPA and the proposed pushover technique for the reference BGB are examined in terms of R-factor components, including overstrength (Ω) and global ductility (R-µ), and are compared with those obtained using the incremental dynamic analysis (IDA) technique. The findings indicate strong agreement between the proposed pushover technique and the IDA technique.

Keywords
box girder bridges (BGBs), torsional vibration modes, the proposed pushover and IDA techniques, R-factor, over-strength (Ω), global ductility (R-µ)

HOW TO CITE THIS ARTICLE:

Aouissi, S., Ouanani, M., Sandjak, K., Louzai, A.: technique incorporating torsional vibration modes, GRAĐEVINAR, 77 (2025) 9, pp. 859-875, doi: https://doi.org/10.14256/JCE.4141.2025

OR:

Aouissi, S., Ouanani, M., Sandjak, K., Louzai, A. (2025). technique incorporating torsional vibration modes, GRAĐEVINAR, 77 (9), 859-875, doi: https://doi.org/10.14256/JCE.4141.2025

LICENCE:

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This paper is licensed under a Creative Commons Attribution 4.0 International License.
Authors:
Soumia Aouiss WEBi
Soumia Aouissi
Ziane Achour University, Algeria
Department of Civil Engineering
Laboratory for Seismic Engineering and Structural Dynamics (LGSDS)
OUANANI Mouloud Photos2
Mouloud Ouanani
Ziane Achour University, Algeria
Department of Civil Engineering
Laboratory for Seismic Engineering and Structural Dynamics (LGSDS)
Khaled Sandjakb WEB
Khaled Sandjak
Ziane Achour University, Algeria
Department of Civil Engineering
Laboratory for Seismic Engineering and Structural Dynamics (LGSDS)
LOUZAI Amar Photos
Amar Louzai
Ziane Achour University, Algeria
Department of Civil Engineering
Laboratory for Seismic Engineering and Structural Dynamics (LGSDS)