The atmospheric Ekman spiral for piecewise-uniform eddy viscosity

Fuente: arXiv
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Auteur principal: Stefanescu, Eduard
Format: Preprint
Publié: 2024
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author Stefanescu, Eduard
author_facet Stefanescu, Eduard
contents We investigate the boundary-value problem of atmospheric Ekman flows with piecewise-uniform eddy viscosity. In addition we present a method for finding more general solutions by considering eddy viscosity as an arbitrary step-function. We discuss the existence and uniqueness of the solutions obtained through this method, providing detailed proofs for cases with one and two "jumps" in eddy viscosity. For scenarios with more "jumps," we establish results inductively. Furthermore, we examine the angle between the bottom surface of the Ekman layer and geostrophic winds by extremizing variables such as the eddy viscosity and its point of change. These calculations reveal how the angle can differ from $45^\circ$, demonstrating that the extreme values of $0^\circ$ and $90^\circ$ are achievable, indicating the potential range of the deflection angle.
format Preprint
id arxiv_https___arxiv_org_abs_2409_04052
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The atmospheric Ekman spiral for piecewise-uniform eddy viscosity
Stefanescu, Eduard
Mathematical Physics
Classical Analysis and ODEs
86A10, 34B05
We investigate the boundary-value problem of atmospheric Ekman flows with piecewise-uniform eddy viscosity. In addition we present a method for finding more general solutions by considering eddy viscosity as an arbitrary step-function. We discuss the existence and uniqueness of the solutions obtained through this method, providing detailed proofs for cases with one and two "jumps" in eddy viscosity. For scenarios with more "jumps," we establish results inductively. Furthermore, we examine the angle between the bottom surface of the Ekman layer and geostrophic winds by extremizing variables such as the eddy viscosity and its point of change. These calculations reveal how the angle can differ from $45^\circ$, demonstrating that the extreme values of $0^\circ$ and $90^\circ$ are achievable, indicating the potential range of the deflection angle.
title The atmospheric Ekman spiral for piecewise-uniform eddy viscosity
topic Mathematical Physics
Classical Analysis and ODEs
86A10, 34B05
url https://arxiv.org/abs/2409.04052