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Research Article | Open Access

Controlled dynamics of a chemotaxis model with logarithmic sensitivity by physical boundary conditions

Ling Xue1( )Min Zhang1Kun Zhao2Xiaoming Zheng3
College of Mathematical Sciences, Harbin Engineering University, Harbin 150001, China
Department of Mathematics, Tulane University, LA 70118, USA
Department of Mathematics, Central Michigan University, MI 48859, USA
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Abstract

We study the global dynamics of large amplitude classical solutions to a system of balance laws, derived from a chemotaxis model with logarithmic sensitivity, subject to time-dependent boundary conditions. The model is supplemented with H 2 initial data and unmatched boundary conditions at the endpoints of a one-dimensional interval. Under suitable assumptions on the boundary data, it is shown that classical solutions exist globally in time. Time asymptotically, the differences between the solutions and their corresponding boundary data converge to zero, as time goes to infinity. No smallness restrictions on the magnitude of the initial perturbations is imposed. Numerical simulations are carried out to explore some topics that are not covered by the analytical results.

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Electronic Research Archive
Pages 4530-4552

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Cite this article:
Xue L, Zhang M, Zhao K, et al. Controlled dynamics of a chemotaxis model with logarithmic sensitivity by physical boundary conditions. Electronic Research Archive, 2022, 30(12): 4530-4552. https://doi.org/10.3934/era.2022230

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Received: 15 February 2022
Revised: 04 June 2022
Accepted: 09 June 2022
Published: 15 December 2022
©2022 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)