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Dynamic and thermodynamic factors controlling increasing summer monsoon rainfall over the West African Sahel

机译:控制西非萨赫勒夏季季风降雨增加的动力学和热力学因素

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摘要

The central-eastern Sahel (CES) subregion of West Africa has experienced a significant increasing trend in summer monsoon rainfall during 1980-2012, but the reasons remain unclear. In this study, we employ a moisture budget analysis to assess the controlling mechanisms and to quantify the contributions of different factors to this increasing trend. Results reveal that the majority of the increasing rainfall over the CES is balanced by increased vertical moisture advection. We further decompose the vertical moisture advection term into dynamic, thermodynamic, and nonlinear components. The dynamic component exhibits the largest contribution to the trend, followed by the thermodynamic component. These components are modulated by strong convergence in the middle and lower troposphere and increased near-surface specific humidity from a remote source. Diagnosing changes in vertical moisture advection against the background of global warming deserves more attention when projecting changes in climate at subregional scales, especially in arid and semiarid regions.
机译:西非中部萨赫勒地区(CES)次区域在1980-2012年期间的夏季季风降雨量呈显着增加趋势,但原因尚不清楚。在这项研究中,我们采用水分预算分析来评估控制机制并量化不同因素对这种增长趋势的贡献。结果表明,CES上大部分增加的降雨都与垂直湿度平流增加有关。我们进一步将垂直水分对流项分解为动态,热力学和非线性分量。动态成分对趋势的贡献最大,其次是热力学成分。这些成分是通过对流层中低层的强收敛以及来自遥远源的近地表特定湿度的增加而调制的。当预测次区域尺度的气候变化时,尤其是在干旱和半干旱地区,在全球变暖的背景下诊断垂直湿度对流变化值得更多关注。

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