An Analysis of Shock Waves in Binary Gas Mixtures with Special Regard to Temperature Overshoot
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Shock wave structures in argon-helium mixtures are numerically analysed on the basis of a kinetic model for binary gas mixtures. The results are compared with Harnett and Muntz' experiment, and reasonable agreement between computation and experiment is found. Special attention is paid to the overshoot phenomena of argon temperature. The argon temperature overshoot is shown from the results to occur for a sufficiently small mole fraction of argon. Such overshoot is also shown to occur for a comparatively larger mole fraction of argon, as the shock Mach number becomes higher.
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