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GBT buckling analysis of thin-walled steel frames: A state-of-the-art report

机译:薄壁钢框架的GBT屈曲分析:最新报告

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This paper presents a state-of-the-art report on the use of Generalised Beam Theory (CBT) to assess the buckling behaviour of plane and space thin-walled steel frames. After a very brief overview of the main concepts and procedures involved in performing a GBT buckling analysis, one addresses the development and numerical implementation of a GBT-based beam finite element formulation that is able (ⅰ) to unveil local, distortional and global buckling modes, (ⅱ) to handle arbitrary loadings (namely those causing non-uniform member internal force and moment diagrams) and (ⅲ) to incorporate the presence of several frame joint configurations and arbitrary end and/or intermediate support conditions (including those associated with the modelling of bracing systems). In particular, one describes the procedures employed to establish the frame linear and geometric stiffness matrices - special attention is paid to the constraint conditions adopted to ensure the local displacement compatibility at the frame joints. The paper closes with the presentation and discussion of a number of numerical results that make it possible to illustrate the application and show the potential of the GBT-based approach to perform frame buckling analyses - they concern both plane and space frames. In order to validate and assess the numerical efficiency and accuracy of the GBT analyses and results (critical buckling loads and mode shapes), the frames are also rigorously analysed in the commercial code Ansys - both the members and joints are discretised by means of fine shell finite element meshes.
机译:本文介绍了有关使用广义梁理论(CBT)评估平面和空间薄壁钢框架的屈曲行为的最新报告。在对执行GBT屈曲分析所涉及的主要概念和程序进行了非常简短的概述之后,我们讨论了基于GBT的梁有限元公式的开发和数值实现,该公式能够(ⅰ)揭示局部,变形和整体屈曲模式,(ⅱ)处理任意载荷(即引起不均匀的构件内力和力矩图的载荷),(ⅲ)合并多个框架节点构造以及任意的端部和/或中间支撑条件(包括与载荷相关的载荷)支撑系统建模)。特别是,其中描述了一种用于建立框架线性和几何刚度矩阵的过程-特别注意为确保框架节点处的局部位移兼容性而采用的约束条件。本文以一系列数值结果的介绍和讨论作为结束,这些数值结果使得可以举例说明应用程序,并展示了基于GBT的方法执行框架屈曲分析的潜力-它们涉及平面和空间框架。为了验证和评估GBT分析和结果(临界屈曲载荷和模态形状)的数值效率和准确性,还在商业代码Ansys中对框架进行了严格的分析-构件和接头均通过细壳离散化有限元网格。

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