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Real gas effects on thermally choked ram accelerator performance

机译:对热窒息的RAM加速器性能的真实气体影响

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A one-dimensional performance analysis code has been modified to account for real gas effects in the combustion zone of the thermally choked ram accelerator. Previous computational studies utilized the ideal gas equation of state and underpredicted experimentally measured thrust values as a function of Mach number. The post-combustion pressure in the ram accelerator is on the order of a few ten MPa and in this regime it is no longer appropriate to ignore intermolecular interactions. Includign a compressibility factor to account for these real gas effects provides a much better match with experimental data. The current research code incorporates the following equations of state: ideal gas, Boltzmann, Percus-Yevick, and a direct solution to the virial expansion in which the virial coefficients are computed using the Lennard-JOnes and Stockmayer potentials. The ideal gas equation of state performs well for initial fill presures up to 1.0 MPa, while the Boltzmann and direct virial model perform adequately for fill pressures up to 5.0 MPa. The Percus-Yevick model also performs well for ram accelerator fill pressures up to 5.0 MPa and is expected to accurately model fill pressures up to a few ten MPa.
机译:一维性能分析代码已被修改以考虑在热呛冲压加速器的燃烧区真实气体的影响。先前的计算研究中使用的状态的理想气体方程和underpredicted实验测得的推力值的马赫数的函数。在冲压加速器后燃烧压力是几十兆帕的顺序上,并在这一制度不再适合忽视分子间的相互作用。 Includign一个压缩因子考虑到这些真实气体效应提供了实验数据更好的匹配。目前的研究代码结合状态的下列方程式:理想气体,玻尔兹曼,Percus-Yevick,和一个直接的解决方案,以维里扩张,其中维里系数使用的Lennard-Jones和Stockmayer电位计算。状态进行的理想气体方程以及用于初始填充presures至多1.0兆帕,而玻尔兹曼和直接维里模型进行充分为填充压力高达5.0兆帕。所述Percus-Yevick模型也可用于冲压加速器填充压力达5.0兆帕表现良好,并有望准确模型填充压力高达几十兆帕。

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