Global solutions for a 2D chemotaxis-fluid system with large measures as initial density and vorticity

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Auteurs principaux: Ferreira, Lucas C. F., Lima, Daniel P. A.
Format: Preprint
Publié: 2023
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author Ferreira, Lucas C. F.
Lima, Daniel P. A.
author_facet Ferreira, Lucas C. F.
Lima, Daniel P. A.
contents We consider a chemotaxis-fluid system in the whole plane $\mathbb{R}^{2}$ which describes the motion of bacteria suspended in a Navier-Stokes fluid and attracted by a chemical (oxygen). Employing the vorticity formulation for the fluid equations, we obtain local and global solutions with large (Radon) measures as initial data for the bacterial density and vorticity. The gravitational/centrifugal potential is taken with finite $L^{2}$-gradient that can be large. The uniqueness property is also discussed. For the global result, we need to assume a smallness condition only on the $L^{\infty}$-norm of the initial oxygen concentration. In comparison with previous works, our results provide a new class for the initial density and vorticity, as well as for the potential, covering particularly singular measures such as Dirac delta, measure concentrated on smooth curves (filaments and rings), among others. For that, we approach the system via critical functional spaces, Kato-type norms, and suitable $L^{p}$-estimates uniformly in time.
format Preprint
id arxiv_https___arxiv_org_abs_2303_10736
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Global solutions for a 2D chemotaxis-fluid system with large measures as initial density and vorticity
Ferreira, Lucas C. F.
Lima, Daniel P. A.
Analysis of PDEs
35K45, 35Q92, 35Q35, 35A01, 92C17, 35R06, 28A33
We consider a chemotaxis-fluid system in the whole plane $\mathbb{R}^{2}$ which describes the motion of bacteria suspended in a Navier-Stokes fluid and attracted by a chemical (oxygen). Employing the vorticity formulation for the fluid equations, we obtain local and global solutions with large (Radon) measures as initial data for the bacterial density and vorticity. The gravitational/centrifugal potential is taken with finite $L^{2}$-gradient that can be large. The uniqueness property is also discussed. For the global result, we need to assume a smallness condition only on the $L^{\infty}$-norm of the initial oxygen concentration. In comparison with previous works, our results provide a new class for the initial density and vorticity, as well as for the potential, covering particularly singular measures such as Dirac delta, measure concentrated on smooth curves (filaments and rings), among others. For that, we approach the system via critical functional spaces, Kato-type norms, and suitable $L^{p}$-estimates uniformly in time.
title Global solutions for a 2D chemotaxis-fluid system with large measures as initial density and vorticity
topic Analysis of PDEs
35K45, 35Q92, 35Q35, 35A01, 92C17, 35R06, 28A33
url https://arxiv.org/abs/2303.10736