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首页> 外文期刊>Journal of propulsion and power >Swirl Injection of Gaseous Oxygen in a Lab-Scale Paraffin Hybrid Rocket Motor
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Swirl Injection of Gaseous Oxygen in a Lab-Scale Paraffin Hybrid Rocket Motor

机译:在实验室规模的石蜡混合火箭发动机中旋流气态氧气

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摘要

Research has shown that oxidizer swirl injection and liquefiable fuels, such as paraffin wax, can increase regression rates in hybrid rockets. However, there are few studies published on motors that use both these strategies simultaneously. This paper presents an exhaustive experimental investigation on the performance of a lab-scale hybrid rocket motor using paraffin wax and gaseous oxygen under a number of different conditions, including five different oxidizer injectors with varying levels of swirl. Prechamber length, fuel grain length, burn duration, oxidizer mass flow rate, and fuel grain geometry were modified from a baseline, and the influence on fuel regression and thrust oscillations was evaluated. Swirl injection increased regression rates up to 2.4 times that of the baseline axial injection configuration, while providing smoother operating conditions. The results show that thrust density of a hybrid rocket can be increased simultaneously by the use of a liquefying fuel and swirl injection. The results obtained also provide a unique experimental observation of the influence of several motor parameters on its performance, revealing that prechamber length and the angle of an entry slope on the grain do not contribute significantly to the performance or stability of the motor with swirl injection.
机译:研究表明,氧化剂旋流喷射和可液化燃料(例如石蜡)可以提高混合动力火箭的回归速度。但是,关于电动机同时使用这两种策略的研究很少。本文针对在不同条件下使用石蜡和气态氧的实验室规模混合火箭发动机的性能进行了详尽的实验研究,其中包括五个具有不同涡旋水平的氧化剂喷射器。从基线修改前室长度,燃料颗粒长度,燃烧持续时间,氧化剂质量流率和燃料颗粒几何形状,并评估对燃料回归和推力振荡的影响。旋流注射可将回归率提高到轴向轴向注入配置的2.4倍,同时提供更平稳的工作条件。结果表明,通过使用液化燃料和旋流喷射可以同时提高混合动力火箭的推力密度。获得的结果还提供了对几个电动机参数对其性能的影响的独特实验观察结果,表明前室长度和进入坡度对谷物的倾斜度对旋流注入电动机的性能或稳定性没有显着影响。

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  • 来源
    《Journal of propulsion and power》 |2019年第5期|896-905|共10页
  • 作者单位

    Tech Inst Aeronaut, Div Aeronaut Engn, BR-12228900 Sao Jose Dos Campos, Brazil;

    Tech Inst Aeronaut, Div Aeronaut Engn, BR-12228900 Sao Jose Dos Campos, Brazil;

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