English

Coupled Vlasov and non-Newtonian fluid dynamics: existence and large-time behavior

Analysis of PDEs 2025-08-22 v1

Abstract

We study a coupled kinetic-non-Newtonian fluid system on the periodic domain T3{\mathbb T}^3, where particles evolve by a Vlasov equation and interact with an incompressible power-law fluid through a drag force. We prove the global existence of weak solutions for all p>85p > \frac{8}{5}, where p>1p > 1 denotes the power-law exponent of the fluid's stress-strain relation. Under an additional uniform boundedness assumption on the particle density, we also establish large-time decay of a modulated energy functional measuring deviation from velocity alignment. The decay rate is algebraic when p>2p > 2 and exponential when 65p2\frac{6}{5} \le p \le 2, reflecting the role of fluid dissipation in the large-time dynamics.

Keywords

Cite

@article{arxiv.2508.15460,
  title  = {Coupled Vlasov and non-Newtonian fluid dynamics: existence and large-time behavior},
  author = {Young-Pil Choi and Jinwook Jung and Aneta Wróblewska-Kamińska},
  journal= {arXiv preprint arXiv:2508.15460},
  year   = {2025}
}

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24 pages