Modélisation de la décharge luminescente dans un écoulement de gaz en régime turbulent

Gheorghe Vlad, Georges Le Palec, Philippe Bournot
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引用次数: 1

Abstract

In this paper we propose a model of a glow discharge in a turbulent flow. The electron density is calculated using a conservation equation. We assume that the gas glow acts on the electron density and the Shwartz model is used to model the change of diffusivity due to turbulence. In order to show the effects of the turbulence on the electron density, we use a 1D model of a stable electric discharge in to a turbulent flow. The model shows that the increase in turbulent diffusivity at high Reynolds numbers tends to flatten the electron density profiles. Theoretical results are in good agreement with the reported measures. Next, the model was applied to a 2D argon axisymmetric turbulent compressible steady flow. This study shows that when plasma oscillations and turbulence fluctuations of the neutral gas are correlated the temperature profile flattens. Finally, we study electronic distribution into a 3D plasma column in a dissymmetrical flow.

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湍流气体流动中发光放电的建模
本文提出了紊流中辉光放电的模型。电子密度是用守恒方程计算的。我们假设气体辉光作用于电子密度,并采用施瓦茨模型来模拟湍流引起的扩散系数变化。为了显示湍流对电子密度的影响,我们使用了湍流中稳定放电的一维模型。模型表明,在高雷诺数下,湍流扩散系数的增加使电子密度分布趋于平坦。理论结果与实测结果吻合较好。然后,将该模型应用于二维氩气轴对称湍流可压缩定常流动。研究表明,当等离子体振荡与中性气体的湍流波动相关联时,温度分布趋于平缓。最后,我们研究了不对称流中三维等离子体柱中的电子分布。
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