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- W2013247441 abstract "A computational study has been performed to examine the effects of catalytic walls on stagnation region heat transfer. Boundary Conditions for none, finite, and fully catalytic walls have been incorporated into a Multi-Block Compressible Navier-Stokes code, known as Eilmer3. Both chemical and thermal nonequilibrium effects were included. Flows over several blunt bodies model at 0 deg angle of attack were simulated by varying surface catalytic recombination rates. A full range of catalycities was explored in the context of a surface energy balance and a constant wall temperature assumption. Detailed information on species concentrations, temperature, and surface heat flux are presented. Comparison with experimental surface heat flux data obtained using a shock tube is also made. Using the data obtained in a shock tube experiment, the catalytic efficiency of copper oxide was about 0.005, while copper had an efficiency of about 0.07." @default.
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- W2013247441 date "2013-09-30" @default.
- W2013247441 modified "2023-09-24" @default.
- W2013247441 title "NUMERICAL SIMULATION OF THERMOCHEMICAL NON-EQUILIBRIUM FLOW AROUND BLUNT BODIES CONSIDERING CATALYTIC WALL EFFECTS" @default.
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- W2013247441 doi "https://doi.org/10.6112/kscfe.2013.18.3.087" @default.
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