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Global solvability in a three-dimensional self-consistent chemotaxis-Navier–Stokes system with porous medium diffusion: Global solvability in a three-dimensional self-consistent chemotaxis-Navier-Stokes system with porous medium diffusion

Bibliographic Details
Title: Global solvability in a three-dimensional self-consistent chemotaxis-Navier–Stokes system with porous medium diffusion: Global solvability in a three-dimensional self-consistent chemotaxis-Navier-Stokes system with porous medium diffusion
Authors: Chao Liu, Bin Liu
Source: Mathematical Models and Methods in Applied Sciences. 34:1825-1860
Publisher Information: World Scientific Pub Co Pte Ltd, 2024.
Publication Year: 2024
Subject Terms: self-consistent, Quasilinear parabolic equations, chemotaxis-Navier-Stokes system, porous medium diffusion, Cell movement (chemotaxis, etc.), weak solution, Initial-boundary value problems for second-order parabolic systems, 0101 mathematics, Weak solutions to PDEs, PDEs in connection with fluid mechanics, 01 natural sciences
Description: This paper mainly deals with a self-consistent chemotaxis-Navier–Stokes system with porous medium diffusion in a three-dimensional (3D) bounded and smooth domain. The novelty here is that both the effect of gravity (potential force) on cells and the effect of the chemotactic force on fluid are considered, which leads to stronger coupling than the usual chemotaxis-fluid model studied in most existing literatures. It is proved that for any suitably regular initial data, the associated no-flux/no-flux/Dirichlet problem possesses at least one global weak solution or global very weak solution. To the best of our knowledge, this is the first result on the global solvability of the 3D self-consistent chemotaxis-Navier–Stokes system with porous medium diffusion. Our results inter alia provide a more in-depth understanding on the chemotaxis-Navier–Stokes system, and significantly improve previously known ones.
Document Type: Article
File Description: application/xml
Language: English
ISSN: 1793-6314
0218-2025
DOI: 10.1142/s0218202524500374
Access URL: https://zbmath.org/7938956
https://doi.org/10.1142/s0218202524500374
Accession Number: edsair.doi.dedup.....bac23a5beedbbd6fb622713fae6c0424
Database: OpenAIRE
Description
ISSN:17936314
02182025
DOI:10.1142/s0218202524500374