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Hypergolic ignition by head-on collision of N,N,N',N'-tetramethylethylenediamine and white fuming nitric acid droplets

机译:N,N,N',N'-四甲基乙二胺与白色发烟硝酸液滴正面碰撞引起的高目标点火

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Hypergolic ignition by the head-on collision of a smaller N,N,N',N' tetramethylethylenediamine (TMEDA) droplet and a larger white fuming nitric acid (WFNA) droplet was experimentally investigated by using a droplet collision experimental apparatus equipped with a time-resolved shadowgraph, a photodetector and an infrared detector. The investigation was focused on understanding the influence of droplet collision and mixing, which vary with the collisional Weber number (We = 20-220) and the droplet size ratio (Delta = 1.2-2.9) while have a fixed Ohnesorge number (Oh = 2.5x10(-3)), on the hypergolic ignitability and the ignition delay times. The hypergolic ignition was found to critically rely on the heat release from of the liquid-phase reaction of TMEDA and nitric acid, which is subsequent to and enhanced by the effective mixing of the droplets of proper size ratios. Consequently, the ignitability regime nomogram in the We-A space shows that the hypergolic ignition favors small Delta s and large Wes; the ignition delay times tend to decrease with either decreasing Delta, or increasing We, or both. A non-monotonic variation of the ignition delay times with We was observed and attributed to the non-monotonic emergence of jet-like mixing patterns that enhance the droplet mixing and hence the liquid-phase reaction. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:使用配备有时间的液滴碰撞实验装置,对较小的N,N,N',N'四甲基乙二胺(TMEDA)液滴和较大的白色发烟硝酸(WFNA)液滴的正面碰撞进行了高目标点火。分辨阴影图,光电探测器和红外探测器。该研究的重点是理解液滴碰撞和混合的影响,这些影响随碰撞韦伯数(We = 20-220)和液滴尺寸比(Delta = 1.2-2.9)而变化,而具有固定的Ohnesorge数(Oh = 2.5) x10(-3)),关于高可燃性和点火延迟时间。已发现高gogo点火严重地依赖于TMEDA和硝酸的液相反应的放热,这是适当大小比的液滴的有效混合之后并得到的增强。因此,We-A空间中的可燃性诺模图表明,高目标点火有利于较小的Delta s和较大的Wes。点火延迟时间往往随着Δ的减小或We的增大或两者的减小而减小。观察到燃烧延迟时间以We为单位的非单调变化,并归因于喷射样混合模式的非单调出现,从而增强了液滴的混合,从而增强了液相反应。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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