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首页> 外文期刊>Trends in Ecology & Evolution >Simplified robustness assessment of steel framed structures under fire-induced column failure
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Simplified robustness assessment of steel framed structures under fire-induced column failure

机译:在火诱导的柱衰竭下简化钢框架结构的鲁棒性评估

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摘要

This paper proposes a Global-Local Analysis Method (GLAM) to assess the progressive collapse of steel framed structures under fire-induced column failure. GLAM obtains the overall structural response by combining dynamic analysis of the heated column (local) with static analysis of the overall structure (global). Test results of two steel frames which explicitly consider the dynamic effect during fire-induced column failure were employed to validate the proposed GLAM. Results show that GLAM gives reasonable predictions to the test frames in terms of both whether to collapse and the displacement verse temperature curves. Besides, several case studies of a two-dimensional (2D) steel frame and a three-dimensional (3D) steel frame with concrete slabs were conducted by using GLAM. Results show that GLAM gives the same collapse predictions to the studied cases with nonlinear dynamic analysis of the whole structure model. Compared with nonlinear dynamic analysis of the whole structure model, GLAM saves approximately 70% and 99% CPU time for the cases of 2D and 3D steel frame, respectively. Results also show that the load level of a structure has notable effects on the restraint condition of a heated column in the structure.
机译:本文提出了全球局部分析方法(Glam),以评估钢框架结构下的钢框架结构下的逐柱衰竭。通过将加热柱(本地)的动态分析与整体结构(全局)的静态分析相结合来获得整体结构响应。两种钢框架的测试结果明确地考虑了在火诱导的柱故障期间的动态效果用于验证所提出的Glam。结果表明,在无论是折叠和位移常象的温度曲线的方面,Glam都会为测试帧提供合理的预测。此外,通过使用Glam对二维(2D)钢框架和具有混凝土板的三维(3D)钢框架的几种情况研究。结果表明,GLAM对具有整个结构模型的非线性动态分析的研究案例相同的折叠预测。与整个结构模型的非线性动态分析相比,Glam分别为2D和3D钢框架的情况节省了大约70%和99%的CPU时间。结果还表明,结构的载荷水平对结构中加热塔的约束条件具有显着的影响。

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