Numerical Model Reduction of Multi-Scale Electrochemical Ion Transport
Artikel i vetenskaplig tidskrift, 2026

In this paper, we develop a Numerical Model Reduction (NMR) framework for multi-scale modeling of electro-chemically coupled ion transport. Upon introducing the governing equations and employing Variationally Consistent Homogenization, a two-scale model, consisting of a macro-scale and a sub-scale part, is obtained. Instead of solving for the computationally expensive FE2 simulation, where the macro-scale and sub-scale problems are solved in a nested fashion, we exploit NMR by training a surrogate model that replaces the sub-scale finite element simulations. The surrogate model is trained by performing Proper Orthogonal Decomposition on snapshots of the primary fields. Each macro-scale quadrature point is no longer occupied by a Representative Volume Element simulation; instead, it is replaced by a surrogate model that consists of a system of Ordinary Differential Equations. In this way, a computationally efficient solution scheme for solving two-scale problems is obtained.

Numerical Model Reduction

snapshot POD

computational homogenization

transient electrochemical transport

Författare

Vinh Tu

Chalmers, Industri- och materialvetenskap, Material- och beräkningsmekanik

Technische Universität Braunschweig

Fredrik Larsson

Computational Mechanics and Materials Engineering

Kenneth Runesson

Chalmers, Industri- och materialvetenskap, Material- och beräkningsmekanik

R. Janicke

Technische Universität Braunschweig

International Journal for Numerical Methods in Engineering

0029-5981 (ISSN) 1097-0207 (eISSN)

Vol. 127 7 e70313

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Ämneskategorier (SSIF 2025)

Sannolikhetsteori och statistik

Beräkningsmatematik

Teknisk mekanik

DOI

10.1002/nme.70313

Mer information

Senast uppdaterat

2026-04-09