Global boundedness and decay property of a three-dimensional Keller-Segel-Stokes system modeling coral fertilization

Jing Li, Peter Y.H. Pang, Yifu Wang*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

18 引用 (Scopus)

摘要

This paper is concerned with the four-component Keller-Segel-Stokes system modelling the fertilization process of corals: {ρt + u · ∇ρ = Δρ - ∇ · (ρS(x, ρ, c)∇c) - ρm, (x, t) ∈ Ω × (0, T), mt + u · ∇m = Δm - ρm, (x, t) ∈ Ω × (0, T), ct + u · ∇c = Δc - c + m, (x, t) ∈ Ω × (0, T), ut = Δu-∇P + (ρ + m)∇,φ, ∇ · u = 0, (x, t) ∈ Ω × (0, T) subject to the boundary conditions ∇c · _ = ∇m · = (∇ρ - ρS(x, ρ, c)∇c) · = 0 and u = 0, and suitably regular initial data (ρ0(x),m0(x), c0(x), u0(x)), where T ∈ (0,∞], Ω ∈ ℝ3 is a bounded domain with smooth boundary Ω. This system describes the spatio-temporal dynamics of the population densities of sperm ρ and egg m under a chemotactic process facilitated by a chemical signal released by the egg with concentration c in a fluid-flow environment u modeled by the incompressible Stokes equation. In this model, the chemotactic sensitivity tensor S ∈ C2(Ω × [0,∈)2)3×3 satisfies |S(x, ρ, c)| ≤ CS (1 + ρ) with some CS > 0 and α ≥ 0. We will show that for α ≥ 1/3 , the solutions to the system are globally bounded and decay to a spatially homogeneous equilibrium exponentially as time goes to infinity. In addition, we will also show that, for any α ≥ 0, a similar result is valid when the initial data satisfy a certain smallness condition.

源语言英语
文章编号2815
页(从-至)2815-2847
页数33
期刊Nonlinearity
32
8
DOI
出版状态已出版 - 17 7月 2019

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