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Transport Properties of Partially Ionized Argon in a Magnetic Field

机译:部分电离氩在磁场中的输运性质

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摘要

A renewed interest in the calculation of transport coefficients stems from the need to have reliable data to be used for computational fluid dynamics modeling of high enthalpy flows of aerospace interest. Calculations have been performed for the accurate determination of transport coefficients of partially ionized argon in a magnetic field. The calculations employed the Chapman-Enskog method up to very high orders of approximation to calculate the tensorial transport coefficients of the plasma. The study considers the general case of ionization nonequilibrium in a wide temperature range under the action of an imposed magnetic field. Representative results from this extensive set of calculations are reported and some recommendations for use in computational fluid dynamics modeling are drawn.
机译:对传输系数计算的新兴趣来自对可靠数据的需求,该可靠数据可用于航空航天高焓流的计算流体动力学建模。为了准确确定磁场中部分电离的氩的传输系数,已经进行了计算。计算中使用了Chapman-Enskog方法(非常高的近似值)来计算等离子体的张量传输系数。该研究考虑了在强磁场作用下,宽温度范围内电离不平衡的一般情况。报告了来自大量计算的代表性结果,并提出了一些在计算流体动力学建模中使用的建议。

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