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A Closed-form Analysis Of Perimeter Member Behavior In A Steel Building Frame Subject To Fire

机译:火灾下钢结构框架周边构件行为的闭合形式分析

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摘要

This paper outlines a closed-form methodology that can be used to predict the increase in demand experienced by the perimeter columns that are part of a fire-exposed steel building frame. The two-dimensional elevation-view subassembly considered for this study includes a two-storey length of the perimeter column and the floor beam framing into the column in the direction perpendicular to the building's exterior. When heated, this beam will expand and induce bending moment and lateral deflection in the column as well as increased axial force in the beam itself. Our proposed approach has two primary components: (1) a material model that approximates nonlinearity and considers temperature effects, and (2) a mechanical model that represents the perimeter column and beam interaction. These models are used to develop a simplified closed-form solution for beam axial force and perimeter column bending moment that may be used as part of a performance-based design for fire exposure. The simplified model solutions are compared to the results of a more complex and detailed multi-story finite element analysis model. A comparison of these results shows that the simplified model results give good estimations of structural behavior.
机译:本文概述了一种封闭形式的方法,该方法可用于预测作为着火的钢结构框架一部分的外围柱承受的需求增加。本研究中考虑的二维立面视图部件包括两层长的周边柱,以及在垂直于建筑物外部的方向上将地梁框架成柱。加热时,该梁将膨胀并在立柱中引起弯矩和横向挠度,并在梁本身中增加轴向力。我们提出的方法有两个主要组成部分:(1)近似非线性并考虑温度影响的材料模型,(2)代表周向柱和梁相互作用的力学模型。这些模型用于为梁轴向力和周向柱弯矩开发简化的封闭形式解决方案,这些解决方案可以用作基于性能的火灾暴露设计的一部分。将简化的模型解决方案与更复杂和详细的多层有限元分析模型的结果进行比较。这些结果的比较表明,简化的模型结果可以很好地估计结构行为。

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