了解高层木结构建筑的隔层失效问题

Fire Pub Date : 2024-06-05 DOI:10.3390/fire7060190
A. Majdalani, Ignacio Calderón, Wolfram Jahn, J. Torero
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引用次数: 0

摘要

由耐火性保证隔间的传统概念主要涉及破坏性内部扩散潜力问题。外部对流蔓延可能性涉及与窗户和外墙系统相关的隔间损失。因此,假定内部火灾蔓延是在热量过度传导和/或隔间边界连续失效的情况下发生的,在大多数情况下,可以使用传统的性能评估方法(如耐火性)对其进行保守的描述。然而,外部火势蔓延是火焰和热气对流前进的一种潜在的更有效的火势蔓延途径。这一点在木结构建筑等情况下尤为重要,因为在这些建筑中,裸露木材的存在会导致对流蔓延的可能性增加,而失去隔间则会导致不成比例的后果。我们提出了一个简化的隔间火灾模型,目的是量化外露木材构件对隔间火灾的燃料贡献,并确定不同比例的外露木材对对流扩散潜力的影响。总体结果表明,对流火灾蔓延潜力随着可用木材百分比的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding Compartmentation Failure for High-Rise Timber Buildings
The traditional concept of compartmentation guaranteed by fire resistance is mainly concerned with the problem of destructive internal spread potential. External convective spread potential pertains to the loss of compartmentation associated with windows and facade systems. As such, it is assumed that internal fire spread occurs following mechanisms of excessive heat conduction and/or successive failure of the compartment boundaries, which can be, in most cases, conservatively characterised using traditional methods of performance assessment such as fire resistance. Nevertheless, external fire spread represents a potentially more effective route by which fire can spread through the convective advancement of flames and hot gases. This is particularly important in cases such as timber construction, where the presence of exposed timber can result in increased convective spread potential and where loss of compartmentation can result in disproportionate consequences. A simplified compartment fire model is proposed with the objective of quantifying the fuel contribution of exposed timber elements to the compartment fire and determining the impact of variable percentages of exposed timber on the convective spread potential. The overall results show that the convective fire spread potential increases with the increasing percentage of available timber.
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