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Investigation of Ignition Delay and Combustion Efficiency of TMEDA and Various Concentrations of Nitric Acid

机译:茶园和各种硝酸燃烧效率的点火延迟及燃烧效率研究

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The focus of this experimental research was to characterize the ignition delay and combustion performance of non-toxic reactants as a viable replacement for highly toxic propellants, such as hydrazine. The liquid reactants consisted of blends of N,N,N',N'-tetramethylethylenediamine (TMEDA) fuel and white fuming nitric acid (WFNA) oxidizer. Hypergolic ignition characteristics of the reactants were initially evaluated using TMEDA with either >90% or >99.5% WFNA through a series of droplet ignition experiments. Results showed that the >90% WFNA was found to have three times longer average ignition delay than >99.5% WFNA with both mixtures producing delays less than 50 ms. Based upon the demonstrated hypergolic droplet test results, the same mixtures were examined in a bipropellant rocket engine. Both injector design and characteristic length were varied under similar operating conditions to determine combustion efficiency. Results to date have demonstrated similar engine performance between both oxidizers and improvements of over 30% in combustion efficiency with increased characteristic length, with TMEDA/>90%WFNA achieving 88%.
机译:该实验研究的重点是表征无毒反应物的点火延迟和燃烧性能,作为高毒推进剂的可行替代品,如肼。液体反应物由N,N,N',N'-四甲基乙基二胺(TMEDA)燃料和白色发出硝酸(WFNA)氧化剂的共混物组成。最初使用TMEDA通过液滴点火实验使用TMEDA来评估反应物的高压点火特征。通过一系列液滴点火实验,使用> 90%或> 99.5%wFNA进行评价。结果表明,发现90%WFNA具有3倍的平均点火延迟比> 99.5%WFNA,两种混合物产生延迟小于50ms。基于证明的高胆液滴试验结果,在双层火箭发动机中检查相同的混合物。在类似的操作条件下,注射器设计和特征长度都变化以确定燃烧效率。结果迄今为止在氧化剂之间具有相似的发动机性能,并以燃烧效率的提高超过30%,具有增加的特征长度,TMEDA /> 90%WFNA实现88%。

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