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Reactive and nonreactive vibrational energy exchanges in nonequilibrium hypersonic flows

机译:非平衡高超音速流中的反应性和非反应性振动能量交换

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The generalized depletion equations, considering state-to-state kinetics of dissociating nitrogen, were solved to predict the extent of vibrational depletion for 4000 and 6000 K. Two different vibrational transition rate sets were used in the depletion analysis. One was based on the Schwartz-Slawsky-Herzfeld (SSH) theory and the other based on the analytical methods of Capitelli, Billing, Fisher, Doroshenko and co-workers. Transition rates based on the SSH theory predicted a lower depletion due to very high rates in the upper levels. With the objective of delineating the vibration-vibration (V-V) exchanges and vibration-translation (V-T) transfers in nonreactive, vibrationally excited gas dynamic flows, the flowfield simulations of blunt body and expanding nozzles were performed. For vibrational cooling cases (where vibrational temperature is greater than translational temperature) of flow past blunt body and the nozzle flows, the population distribution showed the Treanor-like distribution only at low translational temperatures. This non-Boltzmann behavior and the corresponding low state densities establish the dominance of the V-T energy transfers and the relatively minor role of V-V exchanges for hypersonic gasdynamic flows. (C) 2003 American Institute of Physics. [References: 29]
机译:求解了一般的耗竭方程,考虑了解离氮的状态动力学,以预测4000和6000 K的振动耗竭程度。耗竭分析中使用了两种不同的振动跃迁速率集。一种基于Schwartz-Slawsky-Herzfeld(SSH)理论,另一种基于Capitelli,Billing,Fisher,Doroshenko及其同事的分析方法。基于SSH理论的过渡速率预测了较低的损耗,这是由于较高水平的速率很高。为了描述非反应性,振动激发的气体动态流中的振动-振动(V-V)交换和振动-平移(V-T)转移,对钝体和膨胀喷嘴进行了流场模拟。对于通过钝体的流动和喷嘴流动的振动冷却情况(振动温度大于平移温度),总体分布仅在低平移温度下显示出Treanor状分布。这种非玻尔兹曼行为和相应的低态密度确定了V-T能量转移的主导地位,以及V-V交换对于高超音速气体动力流的相对次要作用。 (C)2003美国物理研究所。 [参考:29]

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