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Evolution of fire models for estimating structural fire-resistance

机译:估算结构防火的消防模型的演变

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Many fire models have been proposed to investigate structural response to fire, where fire is considered as a structural "load" and the structural response determines the "resistance" offered by the structure. Where the term "resistance" is used with its physical meaning and is not restrained by its standard application. Over the course of time, fire models have evolved from simply using the highest gas temperatures resulting from a fully developed compartment fire to more sophisticated computational fluid dynamics (CFD) models, where hyper-realistic timevarying structural temperatures can be determined for a range of realistic fire scenarios. This paper examines the current state of the art in terms of defining gas temperatures for structural fire analysis. Widely adopted fire models used in structural analysis are therefore reviewed. This paper discusses the limitations and scope of applicability of the most commonly used fire models. Recent developments on the coupling of CFD and FEM models are also discussed in detail and their applicability to practical fire scenarios is explored. The primary concern of this review is to evaluate the fire models for their suitability while using for structural fire assessment and not to review studies on the manner in which the actual structural assessment is done.
机译:已经提出了许多火模型来调查对火的结构反应,其中火被认为是结构“载荷”,结构响应决定了结构提供的“阻力”。其中术语“电阻”与其物理意义一起使用,并且不受其标准应用的限制。随着时间的推移,消防模型从简单地使用由完全开发的隔间火灾产生的最高气体温度,以更复杂的计算流体动力学(CFD)模型,其中可以确定一系列现实的超现实的时光结构温度火情况。本文在定义结构火灾分析的气温方面,研究了本领域的当前状态。因此,综述了在结构分析中使用的广泛采用的消防模型。本文讨论了最常用的消防模型的适用性的限制和范围。还详细讨论了CFD和FEM模型耦合的最新进程,并探讨了他们对实际火灾情景的适用性。本综述的主要关注点是在使用结构火灾评估时评估其适用性的消防模型,而不是对实际结构评估的方式进行研究。

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