A-posteriori error analysis for lithium-ion concentrations in batteries utilizing the reduced-basis method

Journal Article (2016)
Author(s)

L. Iapichino (TU Delft - Mechanical Engineering)

S. Volkwein (Universität Konstanz)

A. Wesche (Universität Konstanz)

Research Group
Computational Design and Mechanics
DOI related publication
https://doi.org/10.1080/13873954.2016.1198387 Final published version
More Info
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Publication Year
2016
Language
English
Research Group
Computational Design and Mechanics
Issue number
4
Volume number
22
Pages (from-to)
362-379
Downloads counter
147

Abstract

In this paper, the authors consider a parametrized non-linear parabolic differential equation, which is motivated by lithium-ion battery models. A standard finite volume discretization leads to a high-dimensional discrete non-linear problem so that simulation of the parametrized problem for various different parameters is very costly. Therefore, the reduced-basis method is applied, so that the number of degrees of freedom is reduced significantly and a fast numerical simulation of the model is possible. To control the error, an a-posteriori error estimator is derived. Numerical experiments show the efficiency of the approach.