Exciting Standing Rossby Waves in the Large Rotating Annulus

Fuente: arXiv
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Main Authors: Stewart, Kial D., Shakespeare, Callum J., Schmaltz, Thomas G.
Format: Preprint
Published: 2025
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author Stewart, Kial D.
Shakespeare, Callum J.
Schmaltz, Thomas G.
author_facet Stewart, Kial D.
Shakespeare, Callum J.
Schmaltz, Thomas G.
contents Laboratory experiments with rotating tanks remain the premier physical analogue for atmospheric dynamics. Often, the equipment involved is engineered to be sufficiently versatile and modular so as to be able to accommodate experiments that explore a wide range of atmospheric processes. The exercise of initially configuring the apparatus then involves running experiments that sweep through parameter space to identify the specific dynamical regimes of interest. This process is typically considered part of the development and testing phase of a given project, and these initial experiments are generally left unreported; while many of these test experiments may not be directly relevant to the project at hand, they may be useful for other applications or scientific communities. Here we report on a series of 93 different laboratory experiments run with the intention of identifying suitable experimental configurations that excite and sustain standing Rossby waves.
format Preprint
id arxiv_https___arxiv_org_abs_2510_19214
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Exciting Standing Rossby Waves in the Large Rotating Annulus
Stewart, Kial D.
Shakespeare, Callum J.
Schmaltz, Thomas G.
Fluid Dynamics
Atmospheric and Oceanic Physics
Laboratory experiments with rotating tanks remain the premier physical analogue for atmospheric dynamics. Often, the equipment involved is engineered to be sufficiently versatile and modular so as to be able to accommodate experiments that explore a wide range of atmospheric processes. The exercise of initially configuring the apparatus then involves running experiments that sweep through parameter space to identify the specific dynamical regimes of interest. This process is typically considered part of the development and testing phase of a given project, and these initial experiments are generally left unreported; while many of these test experiments may not be directly relevant to the project at hand, they may be useful for other applications or scientific communities. Here we report on a series of 93 different laboratory experiments run with the intention of identifying suitable experimental configurations that excite and sustain standing Rossby waves.
title Exciting Standing Rossby Waves in the Large Rotating Annulus
topic Fluid Dynamics
Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2510.19214