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Computational fluid dynamics analysis on the critical behavior of reactive chemicals

机译:反应性化学物质临界行为的计算流体动力学分析

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Thermal explosion may occur in the storage process of reactive chemicals with exothermic decomposition reactions when heat removal is not sufficient. The inflection point on temperature versus concentration or time curve has been widely used to study the critical behavior for this type of system. Previous work of critical behavior analysis normally assumed uniform temperature distribution or only pure heat conduction. Hence, the results obtained were only applicable to the small-scale or solid systems. The self-heating effect of the decomposition reaction and reactant consumption often induce temperature and concentration gradients, respectively, which consequently induce natural convection. Therefore, a study of the influence of natural convection on the critical behavior for a large-scale system is necessary. In this work, the critical behavior of hydroxylamine nitrate (HAN) in a cylindrical tank stored in air is studied with the commercial CFD package, Fluent 6.3, by considering the air-film thermal resistance. It was found that the feasible storage region of the large-scale system is smaller than that of the small-scale system because the increase of heat generation with quantity increase overwhelms the heat transfer enhancement due to natural convection.
机译:当散热不充分时,在具有放热分解反应的反应性化学品的存储过程中可能会发生热爆炸。温度对浓度或时间曲线上的拐点已被广泛用于研究此类系统的关键行为。关键行为分析的先前工作通常假定温度分布均匀或仅纯热传导。因此,获得的结果仅适用于小型或实体系统。分解反应的自热效应和反应物消耗通常分别引起温度和浓度梯度,从而引起自然对流。因此,有必要研究自然对流对大型系统临界行为的影响。在这项工作中,考虑到空气膜的热阻,使用商用CFD套件Fluent 6.3研究了储存在空气中的圆柱形罐中硝酸羟胺(HAN)的临界行为。发现大型系统的可行存储区域小于小型系统的可行存储区域,这是因为随着数量增加热量产生的增加超过了自然对流引起的传热增强。

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