We consider the efficient approximation of low Mach number flows by a high-order scheme, coupling a discontinuous Galerkin (DG) discretization in space with an implicit/explicit (IMEX) discretization in time. The splitting into linear implicit and nonlinear explicit parts relies heavily on the incompressible solution. The method has been originally developed for a singularly perturbed ODE and applied to the isentropic Euler equations. Here, we improve, extend, and investigate the so-called RS-IMEX splitting method. The resulting scheme can cope with a broader range of Mach numbers without running into roundoff errors, it is extended to realistic physical boundary conditions, and it is shown to be highly efficient in comparison to more standard solution techniques.
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Univ Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, ItalyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
Nigro, A.
De Bartolo, C.
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Univ Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, ItalyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
De Bartolo, C.
Hartmann, R.
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German Aerosp Ctr DLR, Inst Aerodynam & Flow Technol, D-38108 Braunschweig, GermanyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
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Univ Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, ItalyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
Renda, S. M.
Hartmann, R.
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German Aerosp Ctr DLR, Inst Aerodynam & Flow Technol, D-38108 Braunschweig, GermanyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
Hartmann, R.
De Bartolo, C.
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Univ Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, ItalyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy
De Bartolo, C.
Wallraff, M.
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German Aerosp Ctr DLR, Inst Aerodynam & Flow Technol, D-38108 Braunschweig, GermanyUniv Calabria, Dipartimento Meccan, I-87036 Arcavacata Di Rende, CS, Italy