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Scaling parameters of swirling oxidizer injection in hybrid rocket motors

机译:混合火箭发动机中旋流氧化剂注入的比例参数

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摘要

Hybrid rockets present some disadvantages, mainly low regression rate and combustion inefficiencies. Apromising technology to solve both is swirling oxidizer injection,which enhances thewall heat flux and themixing of the combustion reactants and thus increases the regression rate and the combustion efficiency. A numerical investigation is carried out with a commercial computational fluid dynamics code. This type of analysis can really help with the comprehension of the physical phenomena hidden behind the experimental measurement, and so it can be a powerful aid in the preliminary development and testing of hybrid motors. The first step of this numerical investigation is to study the initial motor geometry, increasing the complexity of the systemwith the addition of each component one by one to better understand which parameters influence the swirling flowfield inside the combustion chamber. Afterward, a comparison between the axial and swirl injection is done, analyzing the qualitative differences in the flowfields and the quantitative ones in the performance. The central and most important part of this numerical study is focused on the inspection of the motor performance related to several scaling parameters.
机译:混合火箭具有一些缺点,主要是回归速度低和燃烧效率低。解决这两者的合理技术是涡旋式氧化剂喷射,它可以增加壁热通量和燃烧反应物的混合,从而提高回归速度和燃烧效率。用商业计算流体动力学代码进行数值研究。这种类型的分析确实可以帮助理解隐藏在实验测量之后的物理现象,因此可以为混合动力电动机的初步开发和测试提供有力的帮助。数值研究的第一步是研究电动机的初始几何形状,并通过逐个添加每个组件来增加系统的复杂性,以更好地了解哪些参数会影响燃烧室内的涡旋流场。然后,对轴向注入和涡流注入进行了比较,分析了流场中的质量差异和性能方面的定量差异。该数值研究的核心也是最重要的部分集中在检查与几个比例参数有关的电动机性能。

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  • 来源
    《Journal of propulsion and power》 |2017年第6期|1378-1394|共17页
  • 作者单位

    University of Padua, Padua, Italy,CISAS G., Colombo, Sri Lanka;

    University of Padua, Padua, Italy,CISAS G., Colombo, Sri Lanka;

    University of Padua, Padua, Italy,CISAS G., Colombo, Sri Lanka;

    Stanford University, Sunnyvale, CA, United States,CTO, Space Propulsion Group, Inc., Sri Lanka;

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