Publications des scientifiques de l'IRD

Janicot Serge, Mounier F., Hall N. M. J., Leroux S., Sultan Benjamin, Kiladis G. N. (2009). Dynamics of the west african monsoon. Part IV : analysis of 25-90-day variability of convection and the role of the indian monsoon. Journal of Climate, 22 (6), p. 1541-1565. ISSN 0894-8755.

Titre du document
Dynamics of the west african monsoon. Part IV : analysis of 25-90-day variability of convection and the role of the indian monsoon
Année de publication
2009
Type de document
Article référencé dans le Web of Science WOS:000265104000014
Auteurs
Janicot Serge, Mounier F., Hall N. M. J., Leroux S., Sultan Benjamin, Kiladis G. N.
Source
Journal of Climate, 2009, 22 (6), p. 1541-1565 ISSN 0894-8755
This paper is part of a series of studies addressing the dynamics of the West African summer monsoon at intraseasonal time scales between 10 and 90 days. The dominant mode of 25-90-day convective variability in the African monsoon was investigated, starting from previous results involving the excitation of dry equatorial Kelvin and Rossby waves by a negative diabatic heat source located over the warm pool. This evolution is consistent with a significant contribution by a convectively coupled equatorial Rossby wave and the MJO. On the other hand, convectively coupled Kelvin waves as well as the dry Kelvin wave signal have a very weak impact. However, there is more to the global control of the African summer monsoon than convectively coupled wave dynamics. The active/break cycle of the Indian monsoon, controlled by a northward-moving dipole of diabatic heating in the Indian sector, can also influence the African monsoon through atmospheric teleconnections. Simulations performed with a dry primitive equation model show that this influence may be transferred through the northern Indian heat source, which excites a Rossby cyclonic circulation propagating westward over North Africa that is cut off by the northward arrival of the equatorial Indian heat source and the associated intrusion of an anticyclonic ridge. Low-level westerly winds and moisture advection within the ITCZ consequently increase over Africa. The mean time lag between an active phase over India and over Africa is about 15-20 days.
Plan de classement
Sciences du milieu [021] ; Limnologie physique / Océanographie physique [032]
Description Géographique
AFRIQUE
Localisation
Fonds IRD [F B010074995]
Identifiant IRD
fdi:010074995
Contact