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Numerical Simulations of Hypersonic Real-Gas Flows Over Space Vehicles
- Format:
- Conference/Event
- Author/Creator:
- Nakao, Masahiro, author.
- Conference Name:
- International Pacific Air & Space Technolgy Conference (1991-10-07 : Nagoya City, Japan)
- Language:
- English
- Physical Description:
- 1 online resource
- Place of Publication:
- Warrendale, PA SAE International 1991
- Summary:
- Hypersonic flows over simple 3-D bodies and a space vehicle are simulated using a real-gas Navier- Stokes code under an equilibrium air assumption. This code is based on 3-D upwind flux splitting scheme with generalized Roe's Riemann solver. The real-gas effect is incorporated using the VEG (Variable Equivalent Gamma) method [1]*. The equivalent gamma and other thermodynamic properties are calculated using empirical curve fits [2].Numerical simulations are conducted for flow fields around a spherical blunt body, a spherical-nose cylinder, and a cone-cylinder as simple configurations, and HOPE (H-orbiting plane: Japanese spaceplane) as a practical plane configuration. Flow conditons are Mach numbers of 7.72, 15.0 for the blunt bodies, 6.86 for the cone-cylinder, and 15.0 for the HOPE. Computed pressure and density distributions are presented. Results for simple configuration cases are compared with experimental data for the code validation
- Notes:
- Vendor supplied data
- Publisher Number:
- 912045
- Access Restriction:
- Restricted for use by site license
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