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Why a mid-depth stress-free boundary condition is incorrect for Ekman flows

Fluid Dynamics 2026-07-31 v1 Mathematical Physics Analysis of PDEs Atmospheric and Oceanic Physics

Abstract

We show that the assumption of a stress-free boundary condition at a finite intermediate depth, namely, at the bottom of the Ekman layer, in the analysis of wind-driven ocean flows necessarily leads to an unphysical current profile. Indeed, if the zz-derivative of the fluid velocity vanishes at a given depth, then this depth necessarily corresponds to a minimum of the velocity profile, with the velocity increasing beneath it. Using a WKB ansatz based on the small variations of the ocean's water density at great depths, we also argue that a no-slip condition at the bottom of the ocean, if sufficiently deep, still effectively implies (up to a very small error) the orthogonality of the Ekman transport and the wind-stress.

Keywords

Cite

@article{arxiv.2607.29261,
  title  = {Why a mid-depth stress-free boundary condition is incorrect for Ekman flows},
  author = {Christian Puntini and Luigi Roberti},
  journal= {arXiv preprint arXiv:2607.29261},
  year   = {2026}
}

Comments

6 pages, 4 figures