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Effects of Thermal Properties on Low Pressure Deflagration Limit of AP

机译:热性能对AP的低压燃烧极限的影响

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Composite propellant contains Ammonium Perchlorate (AP) as a chief ingredient and its combustion characteristics are mostly controlled by the fraction and particle size of AP present in it. The deflagration behavior of AP is studied to get an insight into complex processes in composite propellant combustion. One specific characteristic of AP is that it does not exhibit self sustained combustion below a certain pressure commonly known as low pressure deflagration limit (LPDL) which is the subject of current study. This paper reports the computational studies that have been carried out to explore the effect of thermal properties on LPDL of AP. Two cases have been explored which differ in the manner in which the heat flux is imposed at the surface. Case I corresponds to constant incident flux which is cut off sharply, while Case II corresponds to constant incident heat flux followed by linear decrease to zero. The computational results obtained are in good qualitative agreement with the experimental results for case I. It has been shown through computations that combustion remains stable near the LPDL region.
机译:复合推进剂含有高氯酸铵(AP)作为主要成分,其燃烧特性主要由其中存在的AP的馏分和粒度控制。研究了AP的爆燃行为,以了解复合推进剂燃烧中的复杂过程。 AP的一种特异性特征是它在通常称为低压释放极限(LPDL)的一定压力下方没有表现出自持续燃烧,这是当前研究的主题。本文报告了已经进行的计算研究,以探讨AP的LPDL的热性质的影响。已经探索了两种情况,其施加在表面上的热量通量的方式。案例I对应于恒定的入射通量急剧切断,而壳体II对应于恒定的入射热通量,然后线性减小为零。获得的计算结果与案例I的实验结果良好的定性协议。通过计算燃烧在LPDL区域附近稳定而显示。

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