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具有电子激发的非平衡气体混合流中的输运系数

Transport coefficients in nonequilibrium gas-mixture flows with electronic excitation.

作者信息

Kustova E V, Puzyreva L A

机构信息

Department of Mathematics and Mechanics, Saint Petersburg State University, Saint Petersburg, Russia.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 2):046407. doi: 10.1103/PhysRevE.80.046407. Epub 2009 Oct 28.

Abstract

In the present paper, a one-temperature model of transport properties in chemically nonequilibrium neutral gas-mixture flows with electronic excitation is developed. The closed set of governing equations for the macroscopic parameters taking into account electronic degrees of freedom of both molecules and atoms is derived using the generalized Chapman-Enskog method. The transport algorithms for the calculation of the thermal-conductivity, diffusion, and viscosity coefficients are proposed. The developed theoretical model is applied for the calculation of the transport coefficients in the electronically excited N/N(2) mixture. The specific heats and transport coefficients are calculated in the temperature range 50-50,000 K. Two sets of data for the collision integrals are applied for the calculations. An important contribution of the excited electronic states to the heat transfer is shown. The Prandtl number of atomic species is found to be substantially nonconstant.

摘要

在本文中,建立了一种适用于具有电子激发的化学非平衡中性气体混合物流体输运性质的单温度模型。利用广义查普曼 - 恩斯科格方法,推导了考虑分子和原子电子自由度的宏观参数封闭控制方程组。提出了用于计算热导率、扩散系数和粘度系数的输运算法。将所建立的理论模型应用于计算电子激发的N/N₂混合物中的输运系数。在50 - 50000K的温度范围内计算了比热和输运系数。计算中应用了两组碰撞积分数据。结果表明,激发电子态对热传递有重要贡献。发现原子种类的普朗特数基本是非恒定的。

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