Seasonal variations of gravity wave activity and spectra derived from sodium temperature lidar
Author(s) -
Yang Guotao,
Clemesha Barclay,
Batista Paulo,
Simonich Dale
Publication year - 2010
Publication title -
journal of geophysical research: atmospheres
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.67
H-Index - 298
eISSN - 2156-2202
pISSN - 0148-0227
DOI - 10.1029/2009jd012367
Subject(s) - gravity wave , lidar , spectral line , atmospheric sciences , sodium , perturbation (astronomy) , environmental science , gravitational wave , wavelength , potential temperature , spectral density , computational physics , physics , materials science , optics , astrophysics , mathematics , astronomy , metallurgy , statistics , quantum mechanics
Gravity wave measurements were carried out by a newly developed sodium temperature lidar at São José dos Campos (23°S, 46°W). The seasonal variations of gravity wave activity and spectra derived from temperature data are investigated. The total temperature perturbation and temperature vertical power spectra, Ft(m) at 2 π /(8 km), 2 π /(4 km), and 2 π /(2 km) all show that the semiannual maxima occur near the equinoxes, which is consistent with our earlier study (Yang et al., 2006) using only sodium concentration data. The vertical structure of the mean temperature variance could be related to the vertical distribution of N 2 . Large nightly variability of the temperature perturbation spectral slope was also found as in other sodium concentration lidar studies. The comparison between temperature and density perturbations induced by quasi‐random waves was investigated, and the agreement was found to be good on most (∼78%) nights. Good agreement between monochromatic wave‐induced temperature perturbations and sodium concentration perturbations has also been found, and the wave parameters derived from temperature data and sodium concentration data are comparable.
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