| Literature DB >> 28130571 |
Bertrand Cloez1, Coralie Fritsch2,3,4.
Abstract
In a chemostat, bacteria live in a growth container of constant volume in which liquid is injected continuously. Recently, Campillo and Fritsch introduced a mass-structured individual-based model to represent this dynamics and proved its convergence to a more classic partial differential equation. In this work, we are interested in the convergence of the fluctuation process. We consider this process in some Sobolev spaces and use central limit theorems on Hilbert space to prove its convergence in law to an infinite-dimensional Gaussian process. As a consequence, we obtain a two-dimensional Gaussian approximation of the Crump-Young model for which the long time behavior is relatively misunderstood. For this approximation, we derive the invariant distribution and the convergence to it. We also present numerical simulations illustrating our results.Keywords: Central limit theorem on Hilbert-space; Chemostat model; Crump–Young model; Individual-based model; Stationary and quasi-stationary distributions; Weak convergence
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Year: 2017 PMID: 28130571 DOI: 10.1007/s00285-017-1097-6
Source DB: PubMed Journal: J Math Biol ISSN: 0303-6812 Impact factor: 2.259