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Application of Gas-Kinetic Unified Algorithm Covering Various Flow Regimes for Rotational Non-equilibrium Effect
JIANG Xinyu, LI Zhihui, WU Junlin
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS    2014, 31 (4): 403-411.  
Abstract332)      PDF (1805KB)(1211)      
With gas-kinetic unified algorithm (GKUA) based on Boltzmann equation for various flows regimes, rotational non-equilibrium effect is investigated in Rykov model, in which spin movement of gas molecules is described with moment of inertia. Numerical method of Boltzmann model equation involving rotational non-equilibrium effect is developed. Nitrogen shock wave structure, flows around a 2D blunt-head body and flows around a 3D tine bicone are simulated to validate the method in various flows regimes.
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One-dimensional Shock-tube and Two-dimensional Plate Flows in Boltzmann-Rykov Model Involving Rotational Energy
WU Junlin, LI Zhihui, JIANG Xinyu
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS    2013, 30 (3): 326-336.  
Abstract448)      PDF (3016KB)(1360)      
To investigate effect of rotational degree of freedom on gas flows covering various flow regimes,Boltzmann-Rykov model is studied and reduced velocity distribution functions are introduced with quadrature to rotational degree of freedom of molecular velocity distribution function.A single gas-kinetic model equation is translated into simultaneous equations of three reduced velocity distribution functions at discrete velocity ordinate points with discrete velocity ordinate method and numerical integration technique.One-and two-dimensional Boltzmann-Rykov model equations for diatomic gases are computed with finite-difference method of computational fluid dynamics.One-dimensional shock-tube and the two-dimensional flow past erect plate are analyzed in the whole range of Knudsen numbers.Reliability of gas-kinetic unified algorithm(GKUA) is validated in solving one-and two-dimensional flows from free molecular flow to continuum regimes.It is indicated that the gas rarefaction degree and molecular inner degree of freedom affect flow field greatly.And rarefied gas flows with high Knudsen numbers take serious non-equilibrium effect.
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