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Nonlinear pre-fire and post-fire analysis of steel frames

机译:钢框架的非线性火灾前和火灾后分析

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摘要

A numerical procedure based on the plastic hinge concept for study of the structural behaviour of steel framed structures exposed to fire is described. Most previous research on fire analysis considered the structural performance due to rising temperature. When strain reversal occurs during the cooling phase, the stress-strain curve is different. The plastic deformation is incorporated into the stress-strain curve to model the strain reversal effect in which unloading under elastic behaviour is allowed. This unloading response is traced by the incremental-iterative Newton-Raphson method. The mechanical properties of the steel member in the present fire analysis follows both Eurocode 3 Part 1.2 and BS5950 Part 8, which implicitly allow for thermal creep deformation. This paper presents an efficient fire analysis procedure for predicting thermal and cooling effects on an isolated element and a multi-storey frame. Several numerical and experimental examples related to structural behaviour in cooling phase are studied and compared with results obtained by other researchers. The proposed method is effective in the fire safety design and analysis of a building in a real fire scenario. The scope of investigation is of great significance since a large number of rescuers would normally enter a fire site as soon as the fire is extinguished and during the cooling phase, so a structural collapse can be catastrophic.
机译:描述了一种基于塑料铰链概念的数值程序,用于研究暴露于火中的钢框架结构的结构行为。以前有关火灾分析的大多数研究都考虑了温度升高引起的结构性能。当在冷却阶段发生应变逆转时,应力-应变曲线会有所不同。将塑性变形合并到应力-应变曲线中,以模拟应变反转效应,其中允许在弹性行为下卸载。该卸载响应通过增量迭代牛顿-拉夫森方法进行跟踪。在本次火灾分析中,钢构件的机械性能遵循欧洲规范3部分1.2和BS5950第8部分,这隐含地允许热蠕变变形。本文提出了一种有效的火灾分析程序,用于预测隔离元件和多层框架上的热和冷却效果。研究了几个与冷却阶段的结构行为有关的数值和实验示例,并将其与其他研究人员的结果进行了比较。所提出的方法在真实火灾场景下的建筑物消防安全设计和分析中是有效的。调查范围具有重要意义,因为大批救援人员通常在大火扑灭后以及在冷却阶段通常会进入火场,因此结构倒塌可能是灾难性的。

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