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- W2318563762 abstract "The feasibility of an extended Lattice Boltzmann Methodology (LBM) for high subsonic jets is studied. The distinct advantage of LBM over traditional computational fluid dynamics (CFD) methods is in its ease of handling problems with complex geometries. Simulations of three subsonic round circular jets using the SMC000 nozzle were performed. The conditions are, two isothermal jets with ambient Mach numbers of, M1 D 0:5, and M1 D 0:9, and one heated jet with a Mach number of M1 D 0:9, with a jet temperature ratio to ambient of, Tj=T1 D 2:7, respectively. The trends obtained for the mean centerline streamwise velocity, turbulence intensity and far-field sound are in good agreement with experimental results. It is believed that simulations using LBM for high subsonic jets is the first of its kind." @default.
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- W2318563762 date "2014-06-13" @default.
- W2318563762 modified "2023-09-23" @default.
- W2318563762 title "An Extended Lattice Boltzmann Methodology for High Subsonic Jet Noise Prediction" @default.
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- W2318563762 doi "https://doi.org/10.2514/6.2014-2755" @default.
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