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The structure of variable property, compressible mixing layers in binary gas mixtures

机译:二元气体混合物中可变性质的可压缩混合层的结构

摘要

We present the results of a study of the structure of a parallel compressible mixing layer in a binary mixture of gases. The gases included in this study are hydrogen (H2), helium (He), nitrogen (N2), oxygen (02), neon (Ne) and argon (Ar). Profiles of the variation of the Lewis and Prandtl numbers across the mixing layer for all thirty combinations of gases are given. It is shown that the Lewis number can vary by as much as a factor of eight and the Prandtl number by a factor of two across the mixing layer. Thus assuming constant values for the Lewis and Prandtl numbers of a binary gas mixture in the shear layer, as is done in many theoretical studies, is a poor approximation. We also present profiles of the velocity, mass fraction, temperature and density for representative binary gas mixtures at zero and supersonic Mach numbers. We show that the shape of these profiles is strongly dependent on which gases are in the mixture as well as on whether the denser gas is in the fast stream or the slow stream.
机译:我们提出了在气体的二元混合物中平行可压缩混合层的结构研究的结果。本研究中包括的气体为氢气(H2),氦气(He),氮气(N2),氧气(02),氖气(Ne)和氩气(Ar)。给出了所有三十种气体组合在混合层上的Lewis和Prandtl数的变化曲线。结果表明,在整个混合层中,路易斯数可以相差8倍,普朗特数可以相差2倍。因此,像许多理论研究一样,假设剪切层中二元混合气体的Lewis和Prandtl数为常数,这是一个很差的近似值。我们还展示了代表零速和超音速马赫数下的典型二元气体混合物的速度,质量分数,温度和密度的分布图。我们表明,这些分布图的形状很大程度上取决于混合物中包含哪些气体,以及取决于较稠密的气体是处于快速流还是处于缓慢流中。

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