Beshir M, Mohamed M, Kouritem S A, Lemmertz C K, Centeno F R, Rush D
School of Engineering, University of Edinburgh, Edinburgh, UK.
OFR Consultants, Sevendale House, Lever St., Manchester, M1 1JA UK.
Fire Technol. 2025;61(3):1233-1268. doi: 10.1007/s10694-023-01374-y. Epub 2023 Mar 6.
Previous full-scale fire studies revealed that the role of wind on fire spread between informal settlement dwellings was critical. However, the influence of wind conditions on informal settlement dwellings fire spread is currently understudied in the literature. This study aimed to investigate the effect of external wind conditions on fire spread between two informal settlement dwellings with a distance of 1 meter between them. A parametric numerical analysis was performed using the computational fluid dynamics code Fire Dynamics Simulator. The numerical models were benchmarked through laboratory experiments. The investigation included an analysis of the fire spread mechanism, flashover conditions, and heat transfer processes at the boundaries of the dwellings. Simulations were conducted with burning wood cribs as fuel and three wind speeds (6 m/s, 10 m/s, and 14 m/s) with four wind directions (East, West, South, and North). Results showed that wind speed and direction had a significant impact on the fire dynamics of the origin dwelling and its spread to neighboring dwellings. The wind direction also influenced the time to flashover in both dwellings, with a delay observed when the wind flowed through the alley between the two dwellings. The total heat transfer coefficient was found to be directly proportional to the wind speed for all directions. The internal radiative heat transfer coefficient of one wall was found to represent the total heat transfer coefficient in different scenarios. This study highlights the complexity of determining the role of wind in urban fire spread and underscores the need for further research in this area.
以往的全面火灾研究表明,风在非正式住区住宅之间火灾蔓延中所起的作用至关重要。然而,风况对非正式住区住宅火灾蔓延的影响目前在文献中研究不足。本研究旨在调查外部风况对两座间距为1米的非正式住区住宅之间火灾蔓延的影响。使用计算流体动力学代码“火灾动力学模拟器”进行了参数化数值分析。通过实验室实验对数值模型进行了基准测试。调查包括对火灾蔓延机制、轰燃条件以及住宅边界处的传热过程的分析。以燃烧的木垛作为燃料,在三种风速(6米/秒、10米/秒和14米/秒)和四个风向(东、西、南和北)条件下进行了模拟。结果表明,风速和风向对起火住宅的火灾动态及其向相邻住宅的蔓延有显著影响。风向还影响了两座住宅的轰燃时间,当风穿过两座住宅之间的小巷时,轰燃时间出现延迟。发现总传热系数在所有方向上均与风速成正比。发现一面墙的内部辐射传热系数在不同场景下代表总传热系数。本研究突出了确定风在城市火灾蔓延中作用的复杂性,并强调了该领域进一步研究的必要性。