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The study of sound wave propagation in rarefied gases using unified gas-kinetic scheme
Authors:Rui-Jie Wang  Kun Xu
Affiliation:Rui-Jie Wang Kun Xu Nano Science and Technology Program Hong Kong University of Science and Technology Clear Water Bay, Kowloon, Hong Kong, China Mathematics Department Hong Kong University of Science and Technology Clear Water Bay, Kowloon, Hong Kong, China
Abstract:Sound wave propagation in rarefied monatomic gases is simulated using a newly developed unified gaskinetic scheme (UGKS). The numerical calculations are carried out for a wide range of wave oscillating frequencies. The corresponding rarefaction parameter is defined as the ratio of sound wave frequency to the intermolecular particle collision frequency. The simulation covers the flow regime from the continuum to free molecule one. The treatment of the oscillating wall boundary condition and the methods for evaluating the absorption coefficient and sound wave speed are presented in detail. The simulation results from the UGKS are compared to the Navier–Stokes solutions, the direct simulation Monte Carlo (DSMC) simulation, and experimental measurements. Good agreement with the experimental data has been obtained in the whole flow regimes for the corresponding Knudsen number from 0.08 to 32. The current study clearly demonstrates the capability of the UGKS method in capturing the sound wave propagation and its usefulness for the rarefied flow study.
Keywords:Unified gas-kinetic scheme · Sound wave propagation · Non-equilibrium flows
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