High order semi-Lagrangian particle methods for transport equations: numerical analysis and implementation issues

Nov 4, 2020·
Georges-Henri Cottet
,
Jean-Matthieu Etancelin
,
Franck Pérignon
Christophe Picard
Christophe Picard
· 0 min read
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Abstract
This paper is devoted to the definition, analysis and implementation of semi-Lagrangian methods as they result from particle methods combined with remeshing. We give a complete consistency analysis of these methods, based on the regularity and momentum properties of the remeshing kernels, and a stability analysis of a large class of second and fourth order methods. This analysis is supplemented by numerical illustrations. We also describe a general approach to implement these methods in the context of hybrid computing and investigate their performance on GPU processors as a function of their order of accuracy.
Type
publications
Christophe Picard
Authors
Associate Professor in Applied Mathematics

I am an associate professor in Applied Mathematics at Grenoble INP - Ensimag. I perform my research in LJK (Laboratoire Jean Kuntzmann). I am a member of the EDP team in Partial Differential Equation.

My research interests include Scientific computing, High Performance Computing, Simulation and Modeling.