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Influence of the fire location and the size of a compartment on the heat and smoke flow out of the compartment

机译:火灾位置的影响和隔室的大小在隔室中的热量和烟雾流出

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This paper presents results of CFD and scale modelling of the flow of heat and smoke inside and outside of a compartment, in case of fire. Estimation of mass flow out of a compartment is critical, as it is the boundary condition in further considerations related to the exhaust of the smoke from a building - also in analysis related to the performance of natural ventilation in wind conditions. Both locations of the fire and the size of compartment were addressed as possible variables, which influence the mass and the temperature of smoke that leaves the room engulfed in fire. Results of the study show small to none influence of both size of the compartment and the location of the fire, on the mass flow of smoke exiting the room. On the same time, both of these parameters influence the temperature of the smoke - in larger compartments lower average temperatures of the smoke layer, but higher maximum values were observed. Results of this study may be useful also in the determination of the worst case scenarios for structural analysis, or in the investiga tion of the spread of fire through the compartment. Based on the results presented in this study, researchers can attribute an expert judgement choice of fire location, as a single scenario that is representative of a larger amount of probable scenarios.
机译:本文提出了CFD和速度建模的结果,在一个舱室内外的热量和烟雾的速度建模,如火灾的情况下。估计隔室的质量流量是至关重要的,因为它是与来自建筑物的烟雾排气有关的进一步考虑的边界条件 - 在与风力条件中的自然通风性能相关的分析中,也在分析中。作为可能的变量解决了火的两个位置和隔室的尺寸,这影响了使房间吞噬的房间的质量和烟雾的温度。该研究的结果表明,没有舱室的大小的影响和火灾的位置,在离开房间的烟雾流量上。同时,这两个参数都会影响烟雾的温度 - 在较大的隔室中较低的烟雾层的平均温度,但观察到更高的最大值。该研究的结果也可用于确定结构分析的最坏情况,或通过隔间通过隔离的燃烧扩散的最坏情况。基于本研究中提出的结果,研究人员可以将专家判断选择归因于火灾地点,作为代表更大数量的可能场景的场景。

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