Use este identificador para citar ou linkar para este item: http://repositorio.ufc.br/handle/riufc/68810
Tipo: Artigo de Periódico
Título: Intraseasonal variability of the Atlantic Intertropical Convergence Zone during austral summer and winter
Autor(es): Tomaziello, Ana Carolina Nóbile
Carvalho, Leila M. V.
Gandu, Adilson Wagner
Palavras-chave: Intraseasonal variability;waves ·;Madden–Julian oscillation;Variação temporal;Ondas;Oscilação Madden–Julian
Data do documento: 2016
Instituição/Editor/Publicador: Climate Dynamics
Citação: TOMAZIELLO, Ana Carolina Nóbile ; CARVALHO, Leila M. V.; GANDU, Adilson W. Intraseasonal variability of the Atlantic Intertropical Convergence Zone during austral summer and winter. Climate Dynamics, Germany, v. 47, p. 1717–1733, 2016.
Abstract: The Atlantic Intertropical Convergence Zone (A-ITCZ) exhibits variations on several time-scales and plays a crucial role in precipitation regimes of northern South America and western Africa. Here we investigate the variability of the A-ITCZ on intraseasonal time-scales during austral summer (November–March) and winter (MaySeptember) based on a multivariate index that describes the main atmospheric features of the A-ITCZ and retains its variability on interannual, semiannual, and intraseasonal time-scales. This index is the time coefficient of the first combined empirical orthogonal function mode of anomalies (annual cycle removed) of precipitation, and zonal and meridional wind components at 850 hPa from the climate forecast system reanalysis (1979–2010). We examine associations between the intraseasonal variability of the A-ITCZ and the activity of the Madden–Julian oscillation (MJO). We show that during austral summer intraseasonal variability of the A-ITCZ is associated with a Rossby wave train in the Northern Hemisphere. In austral winter this variability is associated with the propagation of a Rossby wave in the Southern Hemisphere consistent with the PacificSouth American pattern. Moreover, we show that intense A-ITCZ events on intraseasonal time-scales are more frequent during the phase of MJO characterized by convection over western Pacific and suppression over the Indian Ocean. These teleconnection patterns induce anomalies in the trade winds and upper level divergence over the equatorial Atlantic that modulate the intensity of the A-ITCZ. Keywords Atlantic ITCZ ·
URI: http://www.repositorio.ufc.br/handle/riufc/68810
ISSN: 0930-7575
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