有风的大型池火燃烧特性分析

Zhen Chen, W. Song, L. Lv
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引用次数: 3

摘要

池火具有高温、高辐射强度的特点,是化工企业的重大事故,但对大罐面积池火的研究相对较少。以某大型原油储罐面积为例,对大型水池火灾进行了研究,对考虑风速影响的火焰高度和热流密度进行了计算和分析。在水池火灾理论的基础上,利用仿真软件FDS对不同风速(V = 0 ~ 20m / s)下的火灾特性进行了模拟计算。通过对计算结果的分析对比可知:Hotfijzer模型和Pritchard-Binding模型适用于大规模的计算火焰角和高度烃池火,当风速20 m / s,半径的死亡、重伤和轻伤分别是63.8米,73.4米,93.4米,风,和附近的坦克和防火堤很快就会完全毁了热辐射,当风速超过4 m / s,泵站将损坏的热量辐射,长时间的而计量厂和办公室、库房外的相邻道路和电力线只会有轻微的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis for Combustion Characteristics of Large-Scale Pool Fire with Wind
The pool fire with characteristics of high temperature and high radiation intensity, is serious accident in chemical companies, but the research for pool fire of large tank area is relatively scarce. Taking a large crude oil storage tank area for an instance, this paper focuses on large-scale pool fire, and the flame height and heat flux was calculated and analyzed considering the influence of wind speed. Based on the theory of the pool fire, the fire characteristics under different wind speed (V = 0 ~ 20m / s) are simulated and calculated with simulation software FDS. Analyzing and contrasting the calculation, it shows that: Hotfijzer model and Pritchard-Binding model is applicable to the calculation for flame angle and height of large-scale hydrocarbon pool fire, when the wind speed is 20m/s, the radius of death, serious injury and minor injury is respectively 63.8m, 73.4m, 93.4m at down wind, and the adjacent tanks and fire dike will soon be ruined completely by the thermal radiation, when the wind speed is faster than 4m/s, the pumping station will be damaged in the long period of heat radiation, and the metering plant and office, the adjacent road and power lines outside the storage house will have only a slight effect.
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