Evaluation of Available Safety Egress Time (ASET) in Performance-Based Design (PBD) Using CFAST

Fire Pub Date : 2024-03-25 DOI:10.3390/fire7040108
Hyo-Yeon Jang, Cheol-Hong Hwang
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Abstract

In South Korea, the need to link fire and evacuation simulations to compare the available safety egress time (ASET) and required safety egress time (RSET) in real time when implementing performance-based design in buildings is increasing. Accordingly, the Consolidated Model of Fire Growth and Smoke Transport (CFAST) has been discussed as an alternative to the fire dynamics simulator, which requires high computational costs, sufficient experience in fire dynamics numerical calculations, and various input parameters and faces limitations in integration with evacuation simulations. A method for establishing a reasonable computational domain to predict the activation times of smoke and heat detectors has been proposed. This study examined the validity of using CFAST to predict factors relevant to the ASET evaluation. The results showed that CFAST, which solved empirical correlations based on heat release rates, predicted high gas temperatures similarly. Moreover, the applicability of the visibility distance calculation method using smoke concentration outputs from CFAST was examined. The results suggest that despite the limitations of the zone model, CFAST can produce reasonable ASET results. These results are expected to enhance the usability of CFAST in terms of understanding general fire engineering technology and simple fire dynamics trends.
使用 CFAST 评估基于性能的设计 (PBD) 中的可用安全出口时间 (ASET)
在韩国,在建筑中实施基于性能的设计时,越来越需要将火灾和疏散模拟联系起来,以实时比较可用安全疏散时间(ASET)和所需安全疏散时间(RSET)。火灾动力学模拟器需要较高的计算成本、足够的火灾动力学数值计算经验和各种输入参数,而且在与疏散模拟集成时面临限制。有人提出了一种建立合理计算域的方法,用于预测烟感和热感探测器的启动时间。本研究考察了使用 CFAST 预测 ASET 评估相关因素的有效性。结果表明,CFAST 解决了基于热释放率的经验相关性问题,对高气体温度的预测结果类似。此外,还考察了利用 CFAST 输出的烟雾浓度计算能见度距离方法的适用性。结果表明,尽管区域模型存在局限性,CFAST 仍能得出合理的 ASET 结果。这些结果有望提高 CFAST 在理解一般消防工程技术和简单火灾动力学趋势方面的可用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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