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- W1983996886 abstract "The two-dimensional spatially elliptic Navier-Stokes equations are used to investigate the chemically reacting and radiating supersonic flow of the hydrogen-air system between two parallel plates and in a channel with a ten-degree compression-expansion ramp at the lower boundary. The explicit unsplit finite-difference technique of MacCormack is used to advance the governing equations in time until convergence is achieved. The chemistry source term in the species equation is treated implicitly to alleviate the stiffness associated with fast reactions. The tangent slab approximation is employed in the radiative flux formulation. Both pseudo-gray and nongray models are used to represent the absorption-emission characteristics of the participating species. Results obtained for specific conditions indicate that the radiative interaction can have a significant influence on the flow field." @default.
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- W1983996886 date "1987-03-24" @default.
- W1983996886 modified "2023-09-23" @default.
- W1983996886 title "Numerical solutions of chemically reacting and radiating flows" @default.
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- W1983996886 doi "https://doi.org/10.2514/6.1987-324" @default.
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