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Frame finite element model for nonlinear and vibration analysis of steel structures with Beam-Column and Column-Base Semi-Rigid Connections

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Date

2022

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Gazi Univ, Fac Engineering Architecture

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İnşaat Mühendisliği
Bölümümüzün amacı inşaat mühendisliği alanında nitelikli eğitim veren, lisans ve lisansüstü mezunları; özel sektör, kamu ve araştırma kurumlarınca tercih edilen, ulusal ve uluslararası düzeyde saygın inşaat mühendisliği bölümleri arasında olmaktır.  

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Abstract

In this paper, a shear deformable force-based frame finite element with semi-rigid connections is derived for nonlinear analysis of steel structures. Distributed plasticity approach is defined along element length and section depth, and linear or non-linear semi-rigid connection behavior can be specified anywhere along elements without the necessity to define additional nodes and to increase the degrees of freedom of the structural system. To perform vibration analyses with similar accuracy, force-based consistent mass matrix is used considering semi-rigidity in connections and an appropriate shear correction coefficient for I-sections. The element formulation is presented in 2 dimensions to simplify the formulation, and numerical validation and comparison studies are carried out on complex and irregular structures in 2-D and 3-D. In models with semi-rigid connections, the effect of nonlinear behavior on the structural system has been studied in both beam-column and column-bases. In the presented examples, it was possible to push structures higher than the existing displacements, and it was revealed that the nonlinear behavior in the column-base connections could create much more critical results for the structural systems with P-Delta effects. In addition, high-level accuracy results were obtained when performing vibration analyses with the application of force-based consistent mass matrix.

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I-Sections, Steel Structures, Semi-Rigid Connections, Finite Element Formulation, Nonlinear Structural Analysis, Modal Analysis

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Özel, Halil Fırat; Saritaş, A. (2022). "Frame finite element model for nonlinear and vibration analysis of steel structures with Beam-Column and Column-Base Semi-Rigid Connections", Journal of the Faculty of Engineering and Architecture of Gazi University, Vol.37, No.3, pp.1609-1623.

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Q4

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Q3

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Volume

37

Issue

3

Start Page

1609

End Page

1623