An analytical model for the behavior of I-shaped beam to cylindrical column connections at room temperature and high temperatures

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
S. Hosseini, M. Zeinoddini
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引用次数: 2

Abstract

PurposeIn this paper, a closed-form analytical solution for the prediction of moment-rotation and the rotational stiffness-rotation curves of I-shaped beam to cylindrical column connections, commonly used on offshore platforms, at room and elevated temperatures, are presented.Design/methodology/approachAn analytical solution for the prediction of moment-rotation and the rotational stiffness-rotation curves of I-shaped beam to cylindrical column connections is presented. The results of this model are compared with those of a non-linear coupled mechanical-thermal finite element model and small-scale experimental tests previously provided by the authors.FindingsIn this paper, a closed-form analytical solution for the prediction of moment-rotation and the rotational stiffness-rotation curves of I-shaped beam to cylindrical column connections, commonly used on offshore platforms, at room and elevated temperatures, is presented. The required yield and plastic moments in this model are provided as an extension to Roark's relationships. The results of this model are compared with those of a non-linear coupled mechanical-thermal finite element model and small-scale experimental tests previously provided by the authors. A reasonable agreement has been found between the analytical model results and the experimental/numerical modeling results.Originality/valueThis article is extracted from the author’s doctoral thesis, and all its achievements belong to the authors of the article.
室温和高温下I形梁柱连接性能的分析模型
目的本文提出了一种用于预测海洋平台上常用的I形梁柱连接在室温和高温下的力矩-转动和转动刚度-转动曲线的闭合解析解。设计/方法/方法提出了一种用于预测I形梁柱连接的力矩-转动和转动刚度-转动曲线的解析解。将该模型的结果与作者先前提供的非线性耦合机械-热有限元模型和小规模实验测试的结果进行了比较。结果本文提出了一种用于预测海洋平台上常用的I形梁柱连接在室温和高温下的力矩-转动和转动刚度-转动曲线的闭合解析解。该模型中所需的屈服和塑性力矩是对Roark关系的扩展。将该模型的结果与作者先前提供的非线性耦合机械-热有限元模型和小规模实验测试的结果进行了比较。分析模型结果与实验/数值模拟结果之间存在合理的一致性。原创/价值本文摘自作者的博士论文,所有成果归文章作者所有。
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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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
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