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- W2072401259 abstract "The gas-kinetic Bhatnagar–Gross–Krook (BGK) scheme is extended to hypersonic flow simulations and thusshows that the compressible inviscid flow solutions of the simulations are efficiently and accurately obtained from theBGK scheme without the disastrous shock instability phenomenon that occurs in most hypersonic flow simulationsinvolving strong shock waves. For this particular study, the effect of chemistry in hypersonic flows has not beentaken into account. Hence, the assumption of calorically perfect gas is imposed in all simulations. The high-orderresolution of the scheme is achieved by utilizing monotone upstream-centered schemes for conservation laws-typeinitial reconstruction. While, an implicit-type time-integration method known as the approximate factorization–alternating direction implicit is adopted for computing both steady and unsteady calculations. The gas-kineticscheme is tested meticulously in four two-dimensional numerical examples, namely, the blunt-body problem, thedouble Mach reflection problem, the axisymmetric blunt-body problem, and the flow over a 15-deg ramp. Thenumerical results of the BGK scheme when compared with the other schemes and experimental data show thatthis numerical technique is robust, accurate, and stable for hypersonic flow." @default.
- W2072401259 created "2016-06-24" @default.
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- W2072401259 date "2005-07-01" @default.
- W2072401259 modified "2023-10-17" @default.
- W2072401259 title "Hypersonic Flow Simulation by the Gas-Kinetic Bhatnagar-Gross-Krook Scheme" @default.
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- W2072401259 doi "https://doi.org/10.2514/1.11174" @default.
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