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Numerical analysis of slender elliptical concrete filled columns under axial compression
Affiliation:1. School of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, PR China;2. Department of Civil Engineering, Tsinghua University, Beijing 100084, PR China;3. School of Engineering, University of Bradford, BD7 1DP, UK
Abstract:This paper presents a non-linear finite element model (FEM) used to predict the behaviour of slender concrete filled steel tubular (CFST) columns with elliptical hollow sections subjected to axial compression. The accuracy of the FEM was validated by comparing the numerical prediction against experimental observation of eighteen elliptical CFST columns which carefully chosen to represent typical sectional sizes and member slenderness. The adaptability to apply the current design rules provided in Eurocode 4 for circular and rectangular CFST columns to elliptical CFST columns were discussed. A parametric study is carried out with various section sizes, lengths and concrete strength in order to cover a wider range of member cross-sections and slenderness which is currently used in practices to examine the important structural behaviour and design parameters, such as column imperfection, non-dimension slenderness and buckling reduction factor, etc. It is concluded that the design rules given in Eurocode 4 for circular and rectangular CFST columns may be adopted to calculate the axial buckling load of elliptical CFST columns although using the imperfection of length/300 specified in the Eurocode 4 might be over-conservative for elliptical CFST columns with lower non-dimensional slenderness.
Keywords:Numerical modelling  Elliptical CFST column  Axial compressive load  Buckling reduction factor  Design buckling curves
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