Progress in understanding of weather systems in West Africa

Progress in understanding of weather systems in West Africa
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对西非天气系统了解的进展

DOI:
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发表时间:
2011
期刊:
影响因子:
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通讯作者:
C. Thorncroft
C. Thorncroft
中科院分区:
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文献类型:
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作者:
J. Lafore;C. Flamant;Françoise Guichard;Douglas J. Parker;D. Bouniol;Andreas H. Fink;Vincent Giraud;M. Gosset;Nicholas M. J. Hall;Hartmut Höller;Sarah C. Jones;A. Protat;Rémy Roca;Frank Roux;Frédérique Saïd;C. Thorncroft

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回顾了非洲季风多学科分析在我们对西非季风系统的物理理解方面取得的主要进展。最近的研究提供了对WAM关键功能的高级理解。撒哈拉低热量、季风流与地面的相互作用以及地面上的逆流,都发挥着比先前假设的更重要的作用,并根据对流日循环的位相进行相互作用。最近的研究还强调了中非和东非上游条件的重要性,以及中纬度和WAM之间的强烈相互作用。版权所有(C)2011皇家气象学会
The major advances achieved during African monsoon multidisciplinary analysis in our physical understanding of the West African monsoon (WAM) system are reviewed. Recent research provides an advanced understanding of key WAM features. The Saharan heat low, the interactions of the monsoon flow with the surface and the reversed flow on top of it, all play a more important role than previously assumed, and interact according to the phase of the diurnal cycle of convection. Recent studies also emphasise the significance of upstream conditions in Central and East Africa, as well as strong interactions between midlatitudes and the WAM. Copyright © 2011 Royal Meteorological Society
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