Consistency and convergence for a family of finite volume discretizations of the Fokker–Planck operator

Loading...
Thumbnail Image
Date
2021
Volume
55
Issue
6
Journal
Series Titel
Book Title
Publisher
Les Ulis : EDP Sciences
Link to publishers version
Abstract

We introduce a family of various finite volume discretization schemes for the Fokker–Planck operator, which are characterized by different Stolarsky weight functions on the edges. This family particularly includes the well-established Scharfetter–Gummel discretization as well as the recently developed square-root approximation (SQRA) scheme. We motivate this family of discretizations both from the numerical and the modeling point of view and provide a uniform consistency and error analysis. Our main results state that the convergence order primarily depends on the quality of the mesh and in second place on the choice of the Stolarsky weights. We show that the Scharfetter–Gummel scheme has the analytically best convergence properties but also that there exists a whole branch of Stolarsky means with the same convergence quality. We show by numerical experiments that for small convection the choice of the optimal representative of the discretization family is highly non-trivial, while for large gradients the Scharfetter–Gummel scheme stands out compared to the others.

Description
Keywords
Finite volume, Fokker-Planck, Stolarsky mean
Citation
Heida, M., Kantner, M., & Stephan, A. (2021). Consistency and convergence for a family of finite volume discretizations of the Fokker–Planck operator. 55(6). https://doi.org//10.1051/m2an/2021078
Collections
License
CC BY 4.0 Unported