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An Electronic State-to-State Analysis Method for Nonequilibrium Air Flows

机译:非平衡气流的电子状态分析方法

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In the present study, the three different electronic state-to-state methods were developed to analyze the nonequilibrium air flows behind the strong shock wave. In the first approach, denoted as '2T-QSS', the conventional two-temperature (2T) model was utilized together with the quasi-steady state (QSS) assumption. In the second and the third methods, a three-temperature (3T) model was devised, and was tightly coupled with the atomic electronic master equation (EM), and the atomic as well as the diatomic EMs. They were denoted as 'EM-atom' and 'EM-air", respectively. Then, the predictions of the measured nonequilibrium radiation were performed for the three different flow conditions. In the first case, the influence of the diatomic non-Boltzmann distributions was critical. As a result, the EM-air model represented the best accuracy for predicting the initial rising rate and the peak value of the intensity. On the other hand, the 2T-QSS approach highly overestimated. In the second and the third cases, the spatial intensity distributions were more accurately predicted by the EM coupled models than the 2T-QSS approach, which failed to determine the proper starting position of the intensity increment. It was found that the nonequilibrium air flows can be predicted with an improved accuracy by using the EM coupled models comparing with the conventional 2T-QSS approach.
机译:在本研究中,开发了三种不同的电子状态间方法来分析强冲击波后面的非平衡气流。在第一种方法中,称为“ 2T-QSS”,将常规的两温(2T)模型与准稳态(QSS)假设一起使用。在第二种方法和第三种方法中,设计了一个三温度(3T)模型,并将其与原子电子主方程(EM)以及原子和双原子EM紧密耦合。它们分别表示为“ EM-atom”和“ EM-air”,然后,针对三种不同的流动条件对测得的非平衡辐射进行了预测:在第一种情况下,双原子非Boltzmann分布的影响因此,EM-air模型代表了预测初始上升速率和强度峰值的最佳精度;另一方面,2T-QSS方法被高估了。与2T-QSS方法相比,EM耦合模型能更准确地预测空间强度分布,而2T-QSS方法无法确定强度增量的正确起始位置,发现非平衡气流可以通过以下方法提高精度:与传统的2T-QSS方法相比,使用EM耦合模型。

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