Piecewise Field-Aligned Finite Element Method for Multi-Mode Nonlinear Particle Simulations in tokamak plasmas

Fuente: arXiv
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Hauptverfasser: Lu, Zhixin, Meng, Guo, Sonnendrücker, Eric, Hatzky, Roman, Mishchenko, Alexey, Zonca, Fulvio, Lauber, Philipp, Hoelzl, Matthias
Format: Preprint
Veröffentlicht: 2024
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author Lu, Zhixin
Meng, Guo
Sonnendrücker, Eric
Hatzky, Roman
Mishchenko, Alexey
Zonca, Fulvio
Lauber, Philipp
Hoelzl, Matthias
author_facet Lu, Zhixin
Meng, Guo
Sonnendrücker, Eric
Hatzky, Roman
Mishchenko, Alexey
Zonca, Fulvio
Lauber, Philipp
Hoelzl, Matthias
contents This paper presents a novel approach for simulating plasma instabilities in tokamak plasmas using the piecewise field-aligned finite element method in combination with the particle-in-cell method. Our method traditionally aligns the computational grid but defines the basis functions in piecewise field-aligned coordinates to avoid grid deformation while naturally representing the field-aligned mode structures. This scheme is formulated and implemented numerically. It also applied to the unstructured triangular meshes in principle. We have conducted linear benchmark tests, which agree well with previous results and traditional schemes. Furthermore, multiple-$n$ simulations are also carried out as a proof of principle, demonstrating the efficiency of this scheme in nonlinear turbulence simulations within the framework of the finite element method.
format Preprint
id arxiv_https___arxiv_org_abs_2410_23981
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Piecewise Field-Aligned Finite Element Method for Multi-Mode Nonlinear Particle Simulations in tokamak plasmas
Lu, Zhixin
Meng, Guo
Sonnendrücker, Eric
Hatzky, Roman
Mishchenko, Alexey
Zonca, Fulvio
Lauber, Philipp
Hoelzl, Matthias
Plasma Physics
Computational Physics
This paper presents a novel approach for simulating plasma instabilities in tokamak plasmas using the piecewise field-aligned finite element method in combination with the particle-in-cell method. Our method traditionally aligns the computational grid but defines the basis functions in piecewise field-aligned coordinates to avoid grid deformation while naturally representing the field-aligned mode structures. This scheme is formulated and implemented numerically. It also applied to the unstructured triangular meshes in principle. We have conducted linear benchmark tests, which agree well with previous results and traditional schemes. Furthermore, multiple-$n$ simulations are also carried out as a proof of principle, demonstrating the efficiency of this scheme in nonlinear turbulence simulations within the framework of the finite element method.
title Piecewise Field-Aligned Finite Element Method for Multi-Mode Nonlinear Particle Simulations in tokamak plasmas
topic Plasma Physics
Computational Physics
url https://arxiv.org/abs/2410.23981