Influence of flow confinement on the drag force on a static cylinder
Abstract
The influence of confinement on the drag force on a static cylinder in a viscous flow inside a rectangular slit of aperture has been investigated from experimental measurements and numerical simulations. At low enough Reynolds numbers, varies linearly with the mean velocity and the viscosity, allowing for the precise determination of drag coefficients and corresponding respectively to a mean flow parallel and perpendicular to the cylinder length . In the parallel configuration, the variation of with the normalized diameter of the cylinder is close to that for a 2D flow invariant in the direction of the cylinder axis and does not diverge when . The variation of with the distance from the midplane of the model reflects the parabolic Poiseuille profile between the plates for while it remains almost constant for . In the perpendicular configuration, the value of is close to that corresponding to a 2D system only if and/or if the clearance between the ends of the cylinder and the side walls is very small: in that latter case, diverges as due to the blockage of the flow. In other cases, the side flow between the ends of the cylinder and the side walls plays an important part to reduce : a full 3D description of the flow is needed to account for these effects.
Cite
@article{arxiv.0904.4136,
title = {Influence of flow confinement on the drag force on a static cylinder},
author = {Benoît Semin and Jean-Pierre Hulin and Harold Auradou},
journal= {arXiv preprint arXiv:0904.4136},
year = {2015}
}