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20242026
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math.AP2026

Influence of the Reynolds number on non-Newtonian flow in thin porous media

Maria Anguiano, Matthieu Bonnivard, Francisco J. Suarez-Grau

We study the effect of the Reynolds number on the flow of a generalized Newtonian fluid through a thin porous medium in . This medium is a domain of thickness $\varep…

math.AP20255 cited

A generalized Reynolds equation for micropolar flows past a ribbed surface with nonzero boundary conditions

Matthieu Bonnivard, Igor Pažanin, Francisco J. Suárez-Grau

Inspired by the lubrication framework, in this paper we consider a micropolar fluid flow through a rough thin domain, whose thickness is considered as the small parameter $\varepsi…

math.AP20252 cited

Effective models for generalized Newtonian fluids through a thin porous medium following the Carreau law

Maria Anguiano, Matthieu Bonnivard, Francisco Javier Suarez-Grau

We consider the flow of a generalized Newtonian fluid through a thin porous medium of thickness , perforated by periodically distributed solid cylinders of size . We assume…

math.AP2025

Modeling Carreau fluid flows through a very thin porous medium

María Anguiano, Matthieu Bonnivard, Francisco J. Suárez-Grau

This study investigates three-dimensional, steady-state, and non-Newtonian flows within a very thin porous medium (VTPM). The medium is modeled as a domain confined between two par…

math.AP2025

A field-road system with a rectifiable set

Matthieu Bonnivard, Romain Ducasse, Antoine Lemenant +1

The aim of this paper is to define a field-road system in 2D where the road is a merely 1D-rectifiable set. For this purpose we introduce a general setting in order to define a par…

math.AP2024

On the instability of travelling wave solutions for the transport-Stokes equation

Matthieu Bonnivard, Amina Mecherbet

In this paper, we investigate the instability of the spherical travelling wave solutions for the Transport-Stokes system in . First, a classical scaling argument ensu…