首页> 外文期刊>Advanced Steel Construction: An International Journal >THERMAL MODELLING OF LOAD BEARING COLD-FORMED STEEL FRAME WALLS UNDER REALISTIC DESIGN FIRE CONDITIONS
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THERMAL MODELLING OF LOAD BEARING COLD-FORMED STEEL FRAME WALLS UNDER REALISTIC DESIGN FIRE CONDITIONS

机译:真实设计火灾条件下冷弯型钢框架墙的受力模型

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摘要

Cold-formed Light gauge Steel Frame (LSF) walls lined with plasterboards are increasingly used in the building industry as primary load bearing components. Although they have been used widely, their behaviour in real building fires is not fully understood. Many experimental and numerical studies have been undertaken to investigate the fire performance of load bearing LSF walls under standard fire conditions. However, the standard fire time-temperature curve given in ISO 834 [1] does not represent the fire load present in typical modern buildings that include considerable amount of thermoplastic materials. Some of these materials with high in calorific values increase the fire severity beyond that of the standard fire curve. Fire performance studies of load bearing LSF walls exposed to realistic design fire curves have also been limited. Therefore in this research, finite element thermal models of LSF wall panels were developed to simulate their fire performance using the recently developed realistic design fire time-temperature curves [2]. Suitable thermal properties were proposed for plasterboards and insulations based on laboratory tests and available literature. The developed finite element thermal models were validated by comparing their thermal performance results with available realistic design fire test results, and were then used in a detailed parametric study. This paper presents the details of the developed finite element thermal models of load bearing LSF wall panels under realistic design fire time-temperature curves and the results. It shows that finite element thermal models of LSF walls can be used to predict the fire performance including their fire resistance rating with reasonable accuracy for varying configurations of plasterboard lined LSF walls exposed to realistic design fire time-temperature curves.
机译:衬有石膏板的冷弯轻型钢框架(LSF)墙在建筑行业中越来越多地用作主要的承重组件。尽管它们已被广泛使用,但它们在实际建筑火灾中的行为还没有被完全理解。已经进行了许多实验和数值研究来研究标准火灾条件下承重LSF墙的防火性能。但是,ISO 834 [1]中给出的标准着火时间-温度曲线并不能代表包括大量热塑性材料的典型现代建筑中存在的着火负荷。这些发热量高的材料中,某些材料的着火严重性超过了标准着火曲线。暴露于实际设计火灾曲线的LSF承重墙的防火性能研究也受到限制。因此,在这项研究中,使用最近开发的逼真的设计火灾时间-温度曲线[2],开发了LSF墙板的有限元热模型来模拟其火灾性能。根据实验室测试和现有文献,提出了适用于石膏板和保温材料的热性能。通过将开发的有限元热模型的热性能结果与可用的实际设计耐火测试结果进行比较,从而验证了开发的有限元热模型,然后将其用于详细的参数研究中。本文详细介绍了在实际设计火灾时间-温度曲线下已开发的承重LSF墙板有限元热模型及其结果。结果表明,对于暴露于实际设计火灾时间-温度曲线的石膏板衬砌的LSF墙的各种配置,LSF墙的有限元热模型可用于以合理的精度预测包括其耐火等级在内的防火性能。

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