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Fire resistance rating of light gauge steel frame walls exposed to realistic design fires : a review and development of time equivalent approach

机译:暴露于现实设计火灾下的轻型钢框架墙的耐火等级:等效时间方法的回顾与发展

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摘要

This paper presents the details of research undertaken on the development of an energy based time equivalent approach for light gauge steel frame (LSF) walls. This research utilized an energy based time equivalent approach to obtain the fire resistance ratings (FRR) of LSF walls exposed to realistic design fires with respect to standard fire exposure [1]. It is based on the equal area concept of fire severity and relates to the amount of energy transferred to the member. The proposed method was used to predict the fire resistance of single and double plasterboard lined and externally insulated LSF walls. The predicted fire resistance ratings were compared with the results from finite element analyses and fire design rules for three different wall configurations. This paper presents the review of the available time equivalent approaches and the development of energy based time equivalent approach for the prediction of fire resistance ratings of LSF walls exposed to realistic design fires.
机译:本文介绍了针对轻型钢框架(LSF)墙的基于能量的时间等效方法的开发研究的详细信息。这项研究利用基于能量的时间等效方法来获得暴露于现实设计火灾下相对于标准火灾暴露的LSF墙的耐火等级(FRR)[1]。它基于火灾严重性的均等面积概念,并且与传递给构件的能量有关。所提出的方法用于预测单层和双层石膏板内衬和外部绝缘LSF墙的耐火性。将预测的耐火等级与三种不同墙面配置的有限元分析结果和防火设计规则进行了比较。本文介绍了可用的等效时间方法的综述,以及基于能量的等效时间方法的发展,用于预测暴露于实际设计火灾的LSF墙的耐火等级。

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