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Combustion of Bio-derived Fuels With Additives and Research on the Losses of Unburned Fuel in Hybrid Propellant Rocket Engines

机译:生物源燃料与添加剂的燃烧以及混合动力火箭发动机的未燃烧燃料损失研究

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The paper represents the study of combustion of paraffin and paraffin with aluminum powder in a small-scale Hybrid Propellant Rocket Engine (HPRE). This study is a part of the long-term research of specific features of combustion using non-conventional bio-derived hybrid rocket fuels such as paraffin, beeswax, lard, and bio-derived fuels with additives which are non-toxic and non-explosive along with different oxidizers. Such fuels could replace conventional toxic and explosive fuels, and are planned to be used on the NASA sounding rockets. The goal of the research is to study the combustion of bio-derived fuels, obtain regression rates, compare operational parameters of HPREs and investigate losses of melted unburned bio-derived fuels. A small-scale HPRE, test fixture and instrumentation system have been designed, manufactured, assembled and used for the combustion research and analysis. The results of the research were presented at the 50th and 51st AIAA Meeting and Exhibits, and SciTech, 52nd Aerospace Sciences Meeting. The following paper summarizes recent research results on the combustion of paraffin and paraffin with aluminum powder, represents new findings, such as regression rate formulas for the combustion of paraffin wax with 10% of aluminum powder obtained for two different grain port diameters, and discusses novel methodology and results for prediction of losses of unburned fuel based on the combustion products exhaust plume temperature measurements and thermodynamic calculations of the combustion of bio-derived fuels.
机译:本文代表了在小型混合动力火箭发动机(HPRE)中石蜡和铝粉燃烧石蜡的研究。这项研究是长期研究的一部分,该研究使用非常规生物衍生混合动力火箭燃料(例如石蜡,蜂蜡,猪油和生物衍生燃料,并添加了无毒且非爆炸性的添加剂)进行特定燃烧特性的长期研究。以及不同的氧化剂。这种燃料可以代替常规的有毒和爆炸性燃料,并计划用于NASA探空火箭。该研究的目的是研究生物衍生燃料的燃烧,获得回归率,比较HPRE的运行参数以及调查熔化的未燃烧生物衍生燃料的损失。已经设计,制造,组装了小型的HPRE,测试夹具和仪器系统,并用于燃烧研究和分析。研究的结果发表在第50届和第51届AIAA会议和展览以及SciTech的第52届航空航天科学会议上。以下论文总结了有关石蜡和铝粉燃烧石蜡的最新研究成果,代表了新的发现,例如针对两种不同的晶粒孔直径获得的10%铝粉燃烧石蜡的回归速率公式,并讨论了新的发现。燃烧产物排气羽流温度测量和生物衍生燃料燃烧的热力学计算的预测未燃烧燃料损失的方法和结果。

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