Numerical simulation of non-equilibrium viscous flows in hypersonic nozzles

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作者
China Aerodynamic Research and Development Center, Mianyang 621000, China [1 ]
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来源
Hangkong Xuebao | 2006年 / 2卷 / 204-207期
关键词
Chemical reactions - Computer simulation - Hypersonic flow - Navier Stokes equations - Nozzles - Shock waves - Temperature - Two dimensional - Vibrations (mechanical) - Wind tunnels;
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摘要
The flow in the conical nozzle of Marseille shock tube tunnel (H0=10.3 MJ/kg) is computed by solving 2D-axisymmetric laminar Navier-Stokes equations. The numerical analysis includes computations assuming a chemical/thermal equilibrium, chemical nonequilibrium/thermal equilibrium and chemical/thermal nonequilibrium nozzle expansions. The thermochemical nonequilibrium effects are discussed. The results of centerline translational-rotational temperature, vibrational temperature, Mach number, species mass fraction distributions and temperature and velocity transverse profiles near nozzle exit are presented. It is shown that the exit temperature can be increased when speeding up the chemical reaction process. The freezing of vibrational energy can result in a decrease of the exit temperature.
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