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Consistent multi-internal-temperature models for vibrational and electronic nonequilibrium in hypersonic nitrogen plasma flows

机译:高超声速氮等离子体流中振动和电子非平衡的一致多内部温度模型

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In this work, a state-to-state vibrational and electronic collisional model is developed to investigate nonequilibrium phenomena behind a shock wave in an ionized nitrogen flow. In the ionization dynamics behind the shock wave, the electron energy budget is of key importance and it is found that the main depletion term corresponds to the electronic excitation of N atoms, and conversely the major creation terms are the electron-vibration term at the beginning, then replaced by the electron ions elastic exchange term. Based on these results, a macroscopic multi-internal-temperature model for the vibration of N-2 and the electronic levels of N atoms is derived with several groups of vibrational levels of N-2 and electronic levels of N with their own internal temperatures to model the shape of the vibrational distribution of N-2 and of the electronic excitation of N, respectively. In this model, energy and chemistry source terms are calculated self-consistently from the rate coefficients of the state-to-state database. For the shock wave condition studied, a good agreement is observed on the ionization dynamics as well as on the atomic bound-bound radiation between the state-to-state model and the macroscopic multi-internal temperature model with only one group of vibrational levels of N-2 and two groups of electronic levels of N. (C) 2015 AIP Publishing LLC.
机译:在这项工作中,建立了状态到状态的振动和电子碰撞模型,以研究电离氮气流中冲击波背后的非平衡现象。在冲击波后面的电离动力学中,电子能量收支至关重要,并且发现主要耗竭项与N原子的电子激发相对应,相反,主要的产生项是开始时的电子振动项。 ,然后用电子离子的弹性交换项代替。根据这些结果,可以得出N-2振动和N原子电子能级的宏观多内部温度模型,其中包含几组N-2振动能级和N电子能级,它们各自的内部温度分别为分别模拟N-2的振动分布和N的电子激发的形状。在此模型中,能源和化学源项是根据状态数据库的速率系数自洽地计算的。对于所研究的冲击波条件,状态模型与宏观多内部温度模型之间的电离动力学以及原子束缚辐射之间的一致性很好,只有一组振动水平为N-2和两组电子水准仪。(C)2015 AIP Publishing LLC。

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