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Numerical analysis of flow characteristics of fire extinguishing agents in aircraft fire extinguishing systems

机译:飞机灭火系统中灭火剂流动特性的数值分析

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If fire breaks out on an airplane, a large amount of fire extinguishing agents should be discharged within a very short time. For effective fire extinguishing, increased discharge velocity of the fire extinguishing agents is required. This can be achieved by using a large-sized vessel in which the fire extinguishing agents are highly pressurized by non-combustible gases. It is important to understand the flow characteristics of a fire extinguishing system for optimal system design. This study reports a numerical analysis of the flow characteristics of an airplane fire extinguishing system using halon-1301 as a fire extinguishing agent. The unsteady flow model was simulated with the general-purpose software package "FLUENT", to study the flow characteristics of the fire extinguishing agents in the system. The effects of the rupture surface area and tube diameter on the flow characteristics were investigated for optimal system design. From the analysis results, it was clarified that the characteristics of the halon discharge from the end of tube are very sensitive to the rupture surface area and significantly affected by the tube diameter.
机译:如果飞机上发生火灾,应在很短的时间内排出大量灭火剂。为了有效地灭火,需要增加灭火剂的排出速度。这可以通过使用大型容器来实现,在该容器中,灭火剂被不可燃气体高度加压。重要的是要了解灭火系统的流动特性,以优化系统设计。这项研究报告了使用halon-1301作为灭火剂的飞机灭火系统流动特性的数值分析。用通用软件包“ FLUENT”模拟了非稳态流动模型,以研究系统中灭火剂的流动特性。为了优化系统设计,研究了破裂表面积和管直径对流动特性的影响。从分析结果可以看出,从管端散发的哈龙的特征对破裂表面积非常敏感,并且受管直径的影响很大。

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