Excitation of mixed Rossby-gravity waves by wave-mean flow interactions on the sphere

Fuente: arXiv
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Main Authors: Mahó, Sándor István, Vasylkevych, Sergiy, Žagar, Nedjeljka
Format: Preprint
Published: 2023
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author Mahó, Sándor István
Vasylkevych, Sergiy
Žagar, Nedjeljka
author_facet Mahó, Sándor István
Vasylkevych, Sergiy
Žagar, Nedjeljka
contents The equatorial mixed Rossby-gravity wave (MRGW) is an important contributor to tropical variability. Its excitation mechanism capable of explaining the observed MRGW variance peak at synoptic scales remains elusive. This study investigates wave-mean flow interactions as a generation process for the MRGWs using the barotropic version of the global Transient Inertia-Gravity And Rossby wave dynamics model (TIGAR), which employs Hough harmonics as the basis of spectral expansion, thereby representing MRGWs as prognostic variables. High accuracy numerical simulations manifest that interactions between waves emanating from a tropical heat source and zonal mean jets in the subtropics generate MRGWs with the variance spectra resembling the one observed in the tropical troposphere. Quantification of spectral tendencies associated with the MRGW energy growth underscores the significance of wave-mean flow interactions in comparison to excitation mechanisms driven by external forcing and wave-wave interactions. The MRGW growth and amplitude depend on the asymmetry in the zonal mean flow that may explain not only seasonal variability but also differences between the troposphere and the middle atmosphere.
format Preprint
id arxiv_https___arxiv_org_abs_2306_16836
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Excitation of mixed Rossby-gravity waves by wave-mean flow interactions on the sphere
Mahó, Sándor István
Vasylkevych, Sergiy
Žagar, Nedjeljka
Atmospheric and Oceanic Physics
Fluid Dynamics
The equatorial mixed Rossby-gravity wave (MRGW) is an important contributor to tropical variability. Its excitation mechanism capable of explaining the observed MRGW variance peak at synoptic scales remains elusive. This study investigates wave-mean flow interactions as a generation process for the MRGWs using the barotropic version of the global Transient Inertia-Gravity And Rossby wave dynamics model (TIGAR), which employs Hough harmonics as the basis of spectral expansion, thereby representing MRGWs as prognostic variables. High accuracy numerical simulations manifest that interactions between waves emanating from a tropical heat source and zonal mean jets in the subtropics generate MRGWs with the variance spectra resembling the one observed in the tropical troposphere. Quantification of spectral tendencies associated with the MRGW energy growth underscores the significance of wave-mean flow interactions in comparison to excitation mechanisms driven by external forcing and wave-wave interactions. The MRGW growth and amplitude depend on the asymmetry in the zonal mean flow that may explain not only seasonal variability but also differences between the troposphere and the middle atmosphere.
title Excitation of mixed Rossby-gravity waves by wave-mean flow interactions on the sphere
topic Atmospheric and Oceanic Physics
Fluid Dynamics
url https://arxiv.org/abs/2306.16836