Building transport models from baroclinic wave experimental data

Fuente: arXiv
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Main Authors: Agaoglou, M., Garcia-Garrido, V. J., Harlander, U., Mancho, A. M.
Format: Preprint
Published: 2024
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author Agaoglou, M.
Garcia-Garrido, V. J.
Harlander, U.
Mancho, A. M.
author_facet Agaoglou, M.
Garcia-Garrido, V. J.
Harlander, U.
Mancho, A. M.
contents In this paper we study baroclinic waves both from the experimental and the theoretical perspective. We obtain data from a rotating annulus experiment capable of producing a series of baroclinic eddies similar to those found in the mid-latitude atmosphere. We analyze the experimental outputs using two methods. First, we apply a technique that involves filtering data using Empirical Orthogonal Function (EOF) analysis, which is applied to both velocity and surface temperature fields. The second method relies on the construction of a simple kinematic model based on key parameters derived from the experimental data. To analyze eddy-driven fluid transport, we apply the method of Lagrangian descriptors to the underlying velocity field, revealing the attracting material curves that act as transport barriers in the system. These structures effectively capture the essential characteristics of the baroclinic flow and the associated transport phenomena. Our results show that these barriers are in good agreement with the transport patterns observed in the rotating annulus experiment. In particular, we observe that the structures obtained from the kinematic model, or the one derived in terms of filtered velocities, perform well in this regard.
format Preprint
id arxiv_https___arxiv_org_abs_2412_17581
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Building transport models from baroclinic wave experimental data
Agaoglou, M.
Garcia-Garrido, V. J.
Harlander, U.
Mancho, A. M.
Chaotic Dynamics
Atmospheric and Oceanic Physics
Fluid Dynamics
In this paper we study baroclinic waves both from the experimental and the theoretical perspective. We obtain data from a rotating annulus experiment capable of producing a series of baroclinic eddies similar to those found in the mid-latitude atmosphere. We analyze the experimental outputs using two methods. First, we apply a technique that involves filtering data using Empirical Orthogonal Function (EOF) analysis, which is applied to both velocity and surface temperature fields. The second method relies on the construction of a simple kinematic model based on key parameters derived from the experimental data. To analyze eddy-driven fluid transport, we apply the method of Lagrangian descriptors to the underlying velocity field, revealing the attracting material curves that act as transport barriers in the system. These structures effectively capture the essential characteristics of the baroclinic flow and the associated transport phenomena. Our results show that these barriers are in good agreement with the transport patterns observed in the rotating annulus experiment. In particular, we observe that the structures obtained from the kinematic model, or the one derived in terms of filtered velocities, perform well in this regard.
title Building transport models from baroclinic wave experimental data
topic Chaotic Dynamics
Atmospheric and Oceanic Physics
Fluid Dynamics
url https://arxiv.org/abs/2412.17581