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APPLICATION OF COMPUTER FLUID DYNAMICS (CFD) AND ANALYSIS OF ACCELERATORS IN FIRE INVESTIGATION

机译:计算机流体动力学(CFD)在火灾调查中的应用分析

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Fire investigation is a complex activity that involves skill, technology, knowledge and science and aims to elucidate fire-related events such as cause, origin, propagation, phenomena, etc. Chemical analysis to verify the presence of foreign substances in that location, as well as the use of fire simulation software are efficient and economical ways to study fire behavior during the occurrence of fire. This work demonstrates the application of Gas Chromatography coupled to Mass Spectrometry (GC-MS) in the analysis for gasoline and diesel identification in different substrates, as well as the application of computational fluid dynamics (CFD) to aid in the elucidation of fires. The chemical analyses performed showed the possibility of identifying the presence of accelerants even in small quantities (1 ?μL) and in different types of materials (wood, polyethylene, polyurethane, polyamide and newsprint). The computational model generated by the software proved to be consistent with the data obtained at the scene by the fire expert, thus serving in the hypothesis discard and conclusion of the investigation.
机译:火灾调查是一种复杂的活动,涉及技能,技术,知识和科学,旨在阐明与引起的导致,原产地,繁殖,现象等的消防相关事件,也可以验证该位置中的异物是否存在由于使用火灾模拟软件是在火灾发生过程中学习火灾行为的有效和经济的方法。该工作证明了在不同基材中的汽油和柴油识别的分析中耦合到质谱(GC-MS)的气相色谱偶联,以及应用计算流体动力学(CFD)以帮助阐明火灾。所表演的化学分析表明,即使少量(1?μl)和不同类型的材料(木,聚乙烯,聚氨酯,聚酰胺和新闻纸),也可以鉴定促进剂的存在。由软件产生的计算模型被证明是与消防专家在场景中获得的数据一致,从而在假设丢弃和调查的结论中。

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