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85085773124
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Assessment of numerical boundary conditions for simulation of sound scattering by vorticity
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AIAA-2000-2005
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Complete tests of the algorithm for sound scattering computations are presented in R. Berthet, D. Astruc, J.L. Estivalèzes, Assessment of Numerical Boundary Conditions for Simulation of Sound Scattering by Vorticity, 6th AIAA/CEAS Aeroacoustics Conference, AIAA-2000-2005 (2000) and in
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(2000)
6th AIAA/CEAS Aeroacoustics Conference
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Berthet, R.1
Astruc, D.2
Estivalèzes, J.L.3
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24
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33645429109
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Numerical boundary conditions for sound scattering simulation
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submitted to
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R. Berthet and D. Astruc, Numerical boundary conditions for sound scattering simulation, submitted to J. Comp. Phys. (2002)
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27
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33645430060
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note
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The complete procedure to compute the sound quantities is described in [23] for the numerical simulation
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29
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0003425086
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Éditions Mir, Moscou, Sect. 68
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In the geometrical limit, for M ≪K 1, the wavevector also gives the energy propagation direction and its tilt is proportional to the Mach number. See L. Landau, E. Lifchitz, Cours de Physique Théorique, Tome 6 (Mécanique des Fluides), 2nd edn. (Éditions Mir, Moscou, 1989), Sect. 68
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Landau, L.1
Lifchitz, E.2
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30
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33645434958
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note
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This equation can also be obtained in the geometrical limit of the sound-vortex interaction for M. ≪ 1, with the acoustical ray formalism [21].
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31
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0001167479
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M.V. Berry, R.G. Chambers, M.D. Large, C. Upstill, J.C. Walmsley, Eur. J. Phys. 1, 154 (1980)
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Chambers, R.G.2
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Upstill, C.4
Walmsley, J.C.5
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42749106708
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Using a partial-wave method for sound-mean flow scattering problems
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in press 03
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R. Berthet, C. Coste, Using a partial-wave method for sound-mean flow scattering problems, Phys. Rev. E, in press (03-2003)
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Berthet, R.1
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34
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33645425981
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note
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The complete procedure to compute the sound quantities is described in [19] for the experiment
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