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Performance-based structural fire design of steel frames using conventional computer software

机译:使用常规计算机软件的基于性能的钢框架结构防火设计

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摘要

Fire incident in buildings is common, so the fire safety design of the framed structure is imperative, especially for the unprotected or partly protected bare steel frames. However, software for structural fire analysis is not widely available. As a result, the performance-based structural fire design is urged on the basis of using user-friendly and conventional nonlinear computer analysis programs so that engineers do not need to acquire new structural analysis software for structural fire analysis and design. The tool is desired to have the capacity of simulating the different fire scenarios and associated detrimental effects efficiently, which includes second-order P-D and P-d effects and material yielding. Also the nonlinear behaviour of large-scale structure becomes complicated when under fire, and thus its simulation relies on an efficient and effective numerical analysis to cope with intricate nonlinear effects due to fire. To this end, the present fire study utilizes a second-order elastic/plastic analysis software NIDA to predict structural behaviour of bare steel framed structures at elevated temperatures. This fire study considers thermal expansion and material degradation due to heating. Degradation of material strength with increasing temperature is included by a set of temperature-stress-strain curves according to BS5950 Part 8 mainly, which implicitly allows for creep deformation. This finite element stiffness formulation of beam-column elements is derived from the fifth-order PEP element which facilitates the computer modeling by one member per element. The Newton-Raphson method is used in the nonlinear solution procedure in order to trace the nonlinear equilibrium path at specified elevated temperatures. Several numerical and experimental verifications of framed structures are presented and compared against solutions in literature. The proposed method permits engineers to adopt the performance-based structural fire analysis and design using typical second-order nonlinear structural analysis software.
机译:建筑物中经常发生火灾,因此必须对框架结构进行防火设计,特别是对于未保护或部分保护的裸钢框架。但是,用于结构火灾分析的软件并不广泛。因此,在使用用户友好的常规非线性计算机分析程序的基础上,提倡基于性能的结构火灾设计,以便工程师无需购买用于结构火灾分析和设计的新结构分析软件。期望该工具具有有效地模拟不同的火灾情况和相关的有害影响的能力,其中包括二阶P-D和P-d影响以及材料产量。大型结构在火灾时的非线性行为也变得复杂,因此其仿真依赖于有效而有效的数值分析来应对火灾引起的复杂非线性效应。为此,本次火灾研究利用二阶弹性/塑性分析软件NIDA来预测裸钢框架结构在高温下的结构行为。这项火灾研究考虑了由于加热引起的热膨胀和材料降解。根据BS5950第8部分,一组温度-应力-应变曲线主要包括随温度升高而引起的材料强度降低,这隐含了蠕变变形。梁柱单元的这种有限单元刚度公式是从五阶PEP单元派生的,该单元便于每个单元一个成员进行计算机建模。牛顿-拉夫森法在非线性求解过程中使用,以便在指定的高温下追踪非线性平衡路径。提出了几种框架结构的数值和实验验证,并与文献中的解决方案进行了比较。该方法允许工程师采用典型的二阶非线性结构分析软件进行基于性能的结构火灾分析和设计。

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