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Analysis and Prediction of Dual-Mode Chemical and Electric Ionic Liquid Propulsion Performance

机译:双模化学和电离子液体推进性能的分析与预测

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An analytical and numerical investigation of the performance of a dual-mode propulsion system using ionic liquids is presented. Chemical bi-propellant performance of select propellants is determined using Chemical Equilibrium with Applications. Comparison of predicted specific impulse of ionic liquids with hydrazine and UDMH show that the ionic liquid propellants have 3-12% lower specific impulse when paired with nitrogen tetroxide. However, when paired with hydroxlammonium nitrate, the specific impulse is comparable. Density Impulse for ionic liquids is found to be superior due to their higher density. Analytical investigation of an electrospray electric propulsion system shows that some ionic liquids are capable of operating in a purely ionic regime, providing very high specific impulse (– 6000 sec). The predicted chemical and electric performance data will be used to quantify mass savings for representative dual-mode propulsion missions.
机译:介绍了使用离子液体的双模推进系统性能的分析和数值研究。选择推进剂的化学双推进剂性能使用化学平衡与应用来确定。用肼和UDMH预测特异性脉冲的比较表明,与氮氧化物配对时,离子液体推进剂具有3-12%的特异性脉冲。然而,当与硝酸羟基铵配对时,特定的脉冲是可比的。由于它们的密度较高,发现离子液体的密度脉冲优异。电喷雾电动推进系统的分析研究表明,一些离子液体能够在纯属离子状态下操作,提供非常高的特定脉冲( - 6000秒)。预测的化学和电性能数据将用于量化代表性双模推进特派团的质量节省。

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