Effect of computational grid cell size and heterogeneity of computing area for estimated fire detection time

S. Kalmykov
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Abstract

Introduction. In Russia, based on the provisions of the current regulatory documents, the time for the start of evacuation for a room in which a fire broke out is determined depending on the area of the room. According to some authors, the time of the start of the evacuation of people is a combination of “technical”, which includes the time of detection of a fire, and “psychophysical”, determined by the behavioral and organizational characteristics of the people who make it up. The fire detection time is currently not taken into account.Purpose. Evaluation of the influence of the size of the cells of the computational grid and the inhomogeneity of the computational domain on the estimated time of fire detection.Aims. 1. Establish the qualitative nature of the influence of the size of the cells of the computational grid and the inhomogeneity of the computational domain on the estimated time of fire detection.2. Offer recommendations for determining the estimated time of fire detection.Methods. For research, computer simulation methods were used using the Fire Dynamics Simulator software package.Results and discussion. The use of grids with different cell sizes can significantly reduce the number of cells in the computational domain and, as a result, the computation time. However, this leads to rather contradictory results. The minimum time values are reduced by almost 3–4 times compared to a homogeneous computational grid, and the maximum time increases by 2 times.Conclusions. 1. The size of the cells of the computational grid and the inhomogeneity of the computational domain have a significant impact on the time of fire detection.2. A sufficiently large spread in the values of the estimated fire detection time may indicate an unreliable estimate of the total time for the start of evacuation and incorrect conclusions about the safe evacuation of people and/or the probability of evacuation of people.3. For a correct estimate of the evacuation start time, taken into account the estimated fire detection time, it is recommended to use homogeneous computational grids with cell sizes not exceeding 0.25 m.
计算网格单元大小和计算区域异质性对估计火灾探测时间的影响
介绍。在俄罗斯,根据现行监管文件的规定,发生火灾的房间开始疏散的时间取决于房间的面积。根据一些作者的说法,开始疏散人员的时间是“技术”(包括发现火灾的时间)和“心理物理”(由组成人员的行为和组织特征决定)的结合。目前未考虑火灾探测时间。评估计算网格单元的大小和计算域的非均匀性对火灾探测估计时间的影响。1. 确定计算网格单元的大小和计算域的非均匀性对火灾探测估计时间的影响的定性性质。为确定火灾探测的估计时间提供建议。方法。在研究中,采用了计算机模拟的方法,使用了Fire Dynamics Simulator软件包。结果和讨论。使用不同单元大小的网格可以显著减少计算域中的单元数量,从而缩短计算时间。然而,这导致了相当矛盾的结果。与同质计算网格相比,最小时间值减少了近3-4倍,最大时间增加了2倍。1. 计算网格单元的大小和计算域的非均匀性对火灾探测时间有重要影响。估计的火灾探测时间的值相差足够大,可能表明对开始疏散的总时间的估计不可靠,并且关于人员安全疏散和/或人员疏散概率的结论不正确。考虑到估计的火灾探测时间,为了正确估计疏散开始时间,建议使用单元尺寸不超过0.25 m的均匀计算网格。
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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