Load-carrying capacity of circular concrete filled steel tubes under axial loading: Reliability analyses

Cao Van Vui, Nguyen Hong An, Bui Van Ho
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Abstract

This paper presents the results of reliability analyses of load-carrying capacity of circular concrete filled steel tubes (CFST) using different codes. Four parameters that govern the load-carrying capacity of CFST were considered as variables. These variables include the yield strength of steel, the strength of concrete, the diameter of CFST, and the thickness of the steel tube. The Monte Carlo technique was used for the simulation. Simulations were conducted, and the obtained load-carrying capacities were analysed. The results indicated that the load-carrying capacity of circular CFST follows a normal distribution. Eurocode 4 provided the highest mean load-carrying capacity because the confinement effect was taken into consideration, whereas the mean load-carrying capacity obtained from the American Institute of Steel Construction (2016) and Architectural Institute of Japan (AIJ, 2008) codes were similar. All considered variables resulted in higher standard deviations and coefficients of variation, while the thickness of the steel tube resulted in the lowest standard deviation and coefficients of variation. Therefore, the reliability indices obtained from all considered variables are lowest while those obtained from the variable of thickness are highest.
轴向荷载作用下圆形钢管混凝土承载能力可靠性分析
本文介绍了采用不同规范对圆形钢管混凝土(CFST)承载力进行可靠性分析的结果。将影响钢管混凝土承载能力的4个参数作为变量。这些变量包括钢的屈服强度、混凝土的强度、CFST的直径和钢管的厚度。采用蒙特卡罗技术进行仿真。进行了仿真,并对得到的承载能力进行了分析。结果表明:圆形钢管混凝土承载力服从正态分布;由于考虑了约束效应,欧洲规范4提供了最高的平均承载能力,而美国钢结构协会(2016)和日本建筑协会(AIJ, 2008)规范获得的平均承载能力相似。所有考虑的变量的标准差和变异系数都较高,而钢管厚度的标准差和变异系数最低。因此,各考虑变量得到的可靠度指标最低,厚度变量得到的可靠度指标最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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