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Applicable Analysis
An International Journal
Volume 99, 2020 - Issue 14
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Articles

Solvability of a Keller–Segel system with signal-dependent sensitivity and essentially sublinear production

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Pages 2507-2525 | Received 26 Jul 2018, Accepted 04 Jan 2019, Published online: 21 Jan 2019
 

ABSTRACT

In this paper, we consider the zero-flux chemotaxis system ut=Δu(uχ(v)v) in Ω×(0,),0=Δvv+g(u) in Ω×(0,), in a smooth and bounded domain Ω of R2. The chemotactic sensitivity χ is a general nonnegative function from C1((0,)) while g, the production of the chemical signal v, belongs to C1([0,)) and satisfies λ1g(s)λ2(1+s)β, for all s 0, 0β<1 and 0<λ1λ2. It is established that no chemotactic collapse for the cell distribution u occurs in the sense that any arbitrary nonnegative and sufficiently regular initial data u(x,0) emanates a unique pair of global and uniformly bounded functions (u,v) which classically solve the corresponding initial boundary value problem. Finally, we illustrate the range of dynamics present within the chemotaxis system by means of numerical simulations.

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Acknowledgments

GV is the member of the Gruppo Nazionale per l'Analisi Matematica, la Probabilità e le loro Applicazioni (GNAMPA) of the Istituto Nazionale di Alta Matematica (INdAM).

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

GV is partially supported by the research project Integro-differential Equations and Non-Local Problems, funded by Fondazione di Sardegna (2017).

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