Splitting scheme for gyro-kinetic equations with Semi-Lagrangian and Arakawa substeps

Fuente: arXiv
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Main Authors: Bell, Dominik, Pinto, Martin Campos, Kumozec, Davor, Schnack, Frederik, Bourne, Emily, Sonnendrücker, Eric
Format: Preprint
Published: 2023
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_version_ 1866910714529054720
author Bell, Dominik
Pinto, Martin Campos
Kumozec, Davor
Schnack, Frederik
Bourne, Emily
Sonnendrücker, Eric
author_facet Bell, Dominik
Pinto, Martin Campos
Kumozec, Davor
Schnack, Frederik
Bourne, Emily
Sonnendrücker, Eric
contents The gyro-kinetic model is an approximation of the Vlasov-Maxwell system in a strongly magnetized magnetic field. We propose a new algorithm for solving it combining the Semi-Lagrangian (SL) method and the Arakawa (AKW) scheme with a time-integrator. Both methods are successfully used in practice for different kinds of applications, in our case, we combine them by first decomposing the problem into a fast (parallel) and a slow (perpendicular) dynamical system. The SL approach and the AKW scheme will be used to solve respectively the fast and the slow subsystems. Compared to the scheme in [1], where the entire model is solved using only the SL method, our goal is to replace the method used in the slow subsystem by the AKW scheme, in order to improve the conservation of the physical constants.
format Preprint
id arxiv_https___arxiv_org_abs_2307_12818
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Splitting scheme for gyro-kinetic equations with Semi-Lagrangian and Arakawa substeps
Bell, Dominik
Pinto, Martin Campos
Kumozec, Davor
Schnack, Frederik
Bourne, Emily
Sonnendrücker, Eric
Numerical Analysis
Plasma Physics
The gyro-kinetic model is an approximation of the Vlasov-Maxwell system in a strongly magnetized magnetic field. We propose a new algorithm for solving it combining the Semi-Lagrangian (SL) method and the Arakawa (AKW) scheme with a time-integrator. Both methods are successfully used in practice for different kinds of applications, in our case, we combine them by first decomposing the problem into a fast (parallel) and a slow (perpendicular) dynamical system. The SL approach and the AKW scheme will be used to solve respectively the fast and the slow subsystems. Compared to the scheme in [1], where the entire model is solved using only the SL method, our goal is to replace the method used in the slow subsystem by the AKW scheme, in order to improve the conservation of the physical constants.
title Splitting scheme for gyro-kinetic equations with Semi-Lagrangian and Arakawa substeps
topic Numerical Analysis
Plasma Physics
url https://arxiv.org/abs/2307.12818