Multilevel Adaptive Particle Methods for Convection-Diffusion Equations

We present novel multilevel particle methods with extended adaptivity in areas where increased resolution is required. We present two complementary approaches as inspired by r-adaptivity and adaptive mesh refinement (AMR) concepts introduced in finite difference and finite element schemes. For the r...

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Veröffentlicht in:Multiscale modeling & simulation 2005-01, Vol.4 (1), p.328-357
Hauptverfasser: Bergdorf, Michael, Cottet, Georges-Henri, Koumoutsakos, Petros
Format: Artikel
Sprache:eng
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Zusammenfassung:We present novel multilevel particle methods with extended adaptivity in areas where increased resolution is required. We present two complementary approaches as inspired by r-adaptivity and adaptive mesh refinement (AMR) concepts introduced in finite difference and finite element schemes. For the r-adaptivity a new class of particle-based mapping functions is introduced, while the particle AMR method uses particle remeshing in overlapping domains as a key element. The advantages and drawbacks of the proposed particle methods are illustrated based on results from the solution of one-dimensional convection-diffusion equations, while the extension of the method to higher dimensions is demonstrated in simulations of the inviscidevolution of an elliptical vortex.
ISSN:1540-3459
1540-3467
DOI:10.1137/040602882