Research Article
Pre-rainy season moisture build-up and storm precipitation delivery in the West African Sahel
Article first published online: 7 AUG 2007
DOI: 10.1002/joc.1548
Copyright © 2007 Royal Meteorological Society
Additional Information
How to Cite
Omotosho, J. B. (2008), Pre-rainy season moisture build-up and storm precipitation delivery in the West African Sahel. Int. J. Climatol., 28: 937–946. doi: 10.1002/joc.1548
Publication History
- Issue published online: 24 APR 2008
- Article first published online: 7 AUG 2007
- Manuscript Accepted: 20 MAR 2007
- Manuscript Revised: 13 FEB 2007
- Manuscript Received: 7 JUL 2006
- Abstract
- References
- Cited By
Keywords:
- Sahelian rainfall;
- moisture build-up;
- storms and precipitation delivery
Abstract
The salient differences between the years of above and below normal precipitation, particularly within the long period of 1972–1990 with persistently decreasing Sahelian rainfall, are investigated for Kano, a Nigerian station within the Sahel. Daily rainfall data from 1916 to 2000, storm records from 1951 to 2000 and radiosonde data for three dry and three wet years are used in this study. Results confirm previous findings that the African Easterly Jet (AEJ) located in the 700–600 mb layer is stronger during the dry than in wet years. Significantly, however, it is shown that during the wet years, there is stronger and deeper early season (April–June) build-up of moisture below the AEJ. Furthermore, throughout the period from April to August, the middle troposphere was almost always drier than normal during the dry years and moist than normal in the wet years. Consequent upon these, the storms, which deliver almost all the rainfall in the Sahel, produce at least 150% more precipitation during the wet than in the dry years, though the June to September or annual total number of storms differs by only about 30%. Finally, during the dry years, the onset of rainfall is found to be generally very late compared to the long-term mean, with shorter length of the rainy season. Copyright © 2007 Royal Meteorological Society

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