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      A positivity-preserving scheme for the simulation of streamer discharges in non-attaching and attaching gases

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          Abstract

          Assumed having axial symmetry, the streamer discharge is often described by a fluid model in cylindrical coordinate system, which consists of convection dominated (diffusion) equations with source terms, coupled with a Poisson's equation. Without additional care for a stricter CFL condition or special treatment to the negative source term, popular methods used in streamer discharge simulations, e.g., FEM-FCT, FVM, cannot ensure the positivity of the particle densities for the cases in attaching gases. By introducing the positivity-preserving limiter proposed by Zhang and Shu \cite{ppl} and Strang operator splitting, this paper proposed a finite difference scheme with a provable positivity-preserving property in cylindrical coordinate system, for the numerical simulation of streamer discharges in non-attaching and attaching gases. Numerical examples in non-attaching gas (N\(_2\)) and attaching gas (SF\(_6\)) are given to illustrate the effectiveness of the scheme.

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          Most cited references14

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          Two‐dimensional studies of streamers in gases

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            Essentially non-oscillatory and weighted essentially non-oscillatory schemes for hyperbolic conservation laws

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              On maximum-principle-satisfying high order schemes for scalar conservation laws

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                Author and article information

                Journal
                04 June 2013
                Article
                10.4208/cicp.210213.300413a
                1306.0654
                62661b1c-5c73-4f52-af60-366e3352b08e

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
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                Commun. Comput. Phys., 15 (2014), pp. 153-178
                physics.comp-ph

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