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首页> 外文期刊>Journal of Energetic Materials >Modeling propellant fires radiant heat flux
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Modeling propellant fires radiant heat flux

机译:建模推进剂火灾辐射热通量

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摘要

One of the main dangers associated with any fire is the radiant heat emitted during the event. The heat radiated by a fire can cause unwanted consequences, such as weakening nearby structures, igniting new material and harming people. Propellants are designed to burn at high velocities in the pressure regime of their applications. At atmospheric pressure, the smaller burning velocities of propellants result in a slower energy release and thus in large radiant heat doses being emitted. This study presents the results of experimental tests on various propellant fires. The conclusion is a general model predicting the maximum heat flux emitted during a propellant fire. This model relies on variables which are simple to obtain in a laboratory setting with any propellant sample. Comparing with previously published models reveals some differences that show the proposed conclusion to be a more general result. The final model shall be useful in designing safety guidelines and studying flame propagation in propellants.
机译:与任何火灾相关的主要危险之一是事件期间发出的辐射热量。火焰辐射的热量会导致不希望的后果,例如附近结构的减弱,点燃新材料和伤害人。推进剂设计用于在其应用的压力制度中燃烧高速度。在大气压下,推进剂的较小燃烧速度导致较慢的能量释放,从而发射大辐射热量。本研究介绍了各种推进剂火灾的实验测试结果。结论是预测推进剂火灾期间发出的最大热通量的一般模型。该模型依赖于在具有任何推进剂样品的实验室设置中获得的变量。与以前发表的模型进行比较揭示了一些差异,表明所提出的结论是更一般的结果。最终模型可用于设计安全指导和研究推进剂的火焰繁殖。

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