English

Porous plates at incidence

Fluid Dynamics 2024-06-28 v2

Abstract

This paper investigates the effect of permeability on two-dimensional rectangular plates at incidences. The flow topology is investigated for Reynolds number (ReRe) values between 30 and 90, and the forces on the plate are discussed for Re=30Re=30, where the wake is found to be steady for any value of the Darcy number (DaDa) and the flow incidence (α\alpha). At Re=30Re=30, for a plate normal to the stream and vanishing DaDa, the wake shows a vortex dipole with a stagnation point on the plate surface. With increasing DaDa, the separation between the vortex dipole and the plate increases; the vortex dipole shortens and is eventually annihilated at a critical DaDa. For any value of DaDa below the critical one, the vortex dipole disappears with decreasing α\alpha. However, at low DaDa, the two saddle-node pairs merge at the same α\alpha, annihilating the dipole; while at high DaDa, they merge at different α\alpha, resulting in a single recirculating region for intermediate incidences. The magnitudes of lift, drag, and torque decrease with DaDa. Nevertheless, there exists a range of DaDa and α\alpha, where the magnitude of the plate-wise force component increases with DaDa, driven by the shear on the plate's pressure side. Finally, the analysis of the fluid impulse suggests that the lift and drag reduction with DaDa are associated with the weakening of the leading and trailing edge shear layer, respectively. The present findings will be directly beneficial in understanding the role of permeability on small porous wings.

Keywords

Cite

@article{arxiv.2303.13296,
  title  = {Porous plates at incidence},
  author = {Chandan Bose and Callum Bruce and Ignazio Maria Viola},
  journal= {arXiv preprint arXiv:2303.13296},
  year   = {2024}
}

Comments

13 pages, 9 figures, 4 tables

R2 v1 2026-06-28T09:30:01.858Z