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An asynchronous scheme with local time stepping for multi-scale transport problems: Application to gas discharges
Authors:Thomas Unfer, Jean-Pierre Boeuf, Fran  ois Rogier,Fr  d  ric Thivet
Affiliation:aLAPLACE, Université Paul Sabatier, 118 Route de Narbonne, 31062 Toulouse Cedex, France;bONERA, 2 Avenue Edouard Belin, 31400 Toulouse, France;cUniversité de Toulouse, ISAE, 10 Avenue Edouard Belin 31055 Toulouse, France
Abstract:This paper presents an asynchronous integration scheme with local time stepping for transport problems. The concept consists in associating refresh time tags to the interface fluxes between cells and to the source terms within the cells rather than to the cell themselves. This scheme is less diffusive numerically than its synchronous equivalent. This method is very effective in terms of computation time for problems with localized sharp minima in the CFL condition. The method is then applied to dielectric barrier discharges for aerodynamic flow control.
Keywords:Asynchronous   Transport problem   Local time stepping   Gas discharges   CFL condition
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