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Understanding the Mechanisms behind the Northward Extension of the West African Monsoon during the Mid-Holocene

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Type de ressource
Article de revue
Auteurs/contributeurs
  • Gaetani, Marco (Auteur)
  • Messori, Gabriele (Auteur)
  • Zhang, Qiong (Auteur)
  • Flamant, Cyrille (Auteur)
  • Pausata, Francesco S. R. (Auteur)
Titre
Understanding the Mechanisms behind the Northward Extension of the West African Monsoon during the Mid-Holocene
Résumé
Abstract Understanding the West African monsoon (WAM) dynamics in the mid-Holocene (MH) is a crucial issue in climate modeling, because numerical models typically fail to reproduce the extensive precipitation suggested by proxy evidence. This discrepancy may be largely due to the assumption of both unrealistic land surface cover and atmospheric aerosol concentration. In this study, the MH environment is simulated in numerical experiments by imposing extensive vegetation over the Sahara and the consequent reduction in airborne dust concentration. A dramatic increase in precipitation is simulated across the whole of West Africa, up to the Mediterranean coast. This precipitation response is in better agreement with proxy data, in comparison with the case in which only changes in orbital forcing are considered. Results show a substantial modification of the monsoonal circulation, characterized by an intensification of large-scale deep convection through the entire Sahara, and a weakening and northward shift (~6.5°) of the African easterly jet. The greening of the Sahara also leads to a substantial reduction in the African easterly wave activity and associated precipitation. The reorganization of the regional atmospheric circulation is driven by the vegetation effect on radiative forcing and associated heat fluxes, with the reduction in dust concentration to enhance this response. The results for the WAM in the MH present important implications for understanding future climate scenarios in the region and in teleconnected areas, in the context of projected wetter conditions in West Africa.
Publication
Journal of Climate
Volume
30
Numéro
19
Pages
7621-7642
Date
2017-10-01
Langue
en
DOI
10.1175/JCLI-D-16-0299.1
ISSN
0894-8755, 1520-0442
URL
http://journals.ametsoc.org/doi/10.1175/JCLI-D-16-0299.1
Consulté le
07/11/2024 19:16
Catalogue de bibl.
DOI.org (Crossref)
Autorisations
http://www.ametsoc.org/PUBSReuseLicenses
Référence
Gaetani, M., Messori, G., Zhang, Q., Flamant, C., & Pausata, F. S. R. (2017). Understanding the Mechanisms behind the Northward Extension of the West African Monsoon during the Mid-Holocene. Journal of Climate, 30(19), 7621–7642. https://doi.org/10.1175/JCLI-D-16-0299.1
Auteur·e·s
  • Pausata, Francesco S.R.
Document
  • Gaetani et al. - 2017 - Understanding the Mechanisms behind the Northward Extension of the West African Monsoon during the M.pdf
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https://bibliographies.uqam.ca/escer/bibliographie/L3VIILQX
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