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Biphasic Dispersion Fuels for High-Regression-Rate Hybrid Rockets

机译:高回归速率混合火箭的双相分散燃料

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Biphasic dispersion fuels (BDFs) are multiphase mixtures in which liquid droplets are trapped in a solid binder to form stable hybrid propellant grains. As the flame transfers heat to the fuel grain surface, the internal pressure of the liquid droplets rises, leading to microexplosions that force small droplets and fuel vapors into the flame zone. The combined effects of the liquid fuel being dispersed in the combustion chamber and the craters formed by surface-level microexplosions should lead to high combustion efficiencies and high regression rates. As an initial step in developing BDF, nonionic surfactants and a high shear homogenizing unit were used to emulsify water and ethanol in paraffin wax. The mixtures were cooled and casted into cylindrical fuel grains, and their performance was evaluated with gaseous oxygen in an optically accessible hybrid rocket motor. Results indicate that both BDF formulations exhibited increased regression rates, relative to neat paraffin wax, at all oxidizer mass fluxes tested. The water-based fuels demonstrated up to a 32% increase in regression rate and a 1% increase in average combustion efficiency, relative to neat paraffin fuels. The ethanol-based fuels demonstrated up to a 95% increase in regression rate and a 4% decrease in average combustion efficiency, relative to neat paraffin fuels.
机译:双相分散燃料(BDF)是多相混合物,其中液滴被捕集在固体粘合剂中,形成稳定的混合推进剂颗粒。当火焰将热量传递到燃料颗粒表面时,液滴的内部压力升高,导致微爆炸,迫使小液滴和燃料蒸气进入火焰区。液体燃料散布在燃烧室中和表面水平微爆炸形成的火山口的综合作用应导致高燃烧效率和高回归率。作为开发BDF的第一步,使用非离子表面活性剂和高剪切均质化单元乳化石蜡中的水和乙醇。将混合物冷却并浇铸成圆柱形燃料颗粒,并在光学可及的混合火箭发动机中用气态氧气评估其性能。结果表明,相对于纯石蜡,在所有测试的氧化剂质量通量下,两种BDF制剂均显示出提高的回归速率。与纯石蜡燃料相比,水基燃料的回归率提高了32%,平均燃烧效率提高了1%。与纯石蜡燃料相比,基于乙醇的燃料的回归率提高了95%,平均燃烧效率降低了4%。

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