Convergence of a time discrete scheme for a chemotaxis-consumption model
Abstract
In the present work we propose and study a time discrete scheme for the following chemotaxis-consumption model (for any ), endowed with isolated boundary conditions and initial conditions, where model cell density and chemical signal concentration. The proposed scheme is defined via a reformulation of the model, using the auxiliary variable combined with a Backward Euler scheme for the -problem and a upper truncation of in the nonlinear chemotaxis and consumption terms. Then, two different ways of retrieving an approximation for the function are provided. We prove the existence of solution to the time discrete scheme and establish uniform in time \emph{a priori} estimates, yielding the convergence of the scheme towards a weak solution of the chemotaxis-consumption model.
Keywords
Cite
@article{arxiv.2207.01933,
title = {Convergence of a time discrete scheme for a chemotaxis-consumption model},
author = {Francisco Guillén-González and André Luiz Corrêa Vianna Filho},
journal= {arXiv preprint arXiv:2207.01933},
year = {2023}
}