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首页> 外文期刊>Theoretical and applied climatology >Ensemble-based CMIP5 simulations of West African summer monsoon rainfall: current climate and future changes
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Ensemble-based CMIP5 simulations of West African summer monsoon rainfall: current climate and future changes

机译:基于集合的CMIP5西非夏季风降雨模拟:当前气候和未来变化

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摘要

The West African summer monsoon (WASM) rainfall is of significant socioeconomic importance. Therefore, its response to climate change is of great concern to climate scientists. Based on observations, reanalysis, and multi-model ensemble mean (EnsMean) simulations of Coupled Model Intercomparison Project phase 5 (CMIP5) models, the responses of WASM rainfall, as well as some relevant atmospheric features, to global warming are investigated. Results from the historical period (1980-2005) indicate that EnsMean reasonably reproduced the characteristics of WASM rainfall, and the strength and position of the upper-level Tropical Easterly Jet (TEJ) and mid-level African Easterly Jet (AEJ). Under global warming, EnsMean exhibits localized future changes in spatial rainfall pattern; specifically, a statistically significant increase (decrease) is evident over the central-eastern (western) Sahel subregion. Similarly, the annual cycle exhibits a decrease (increase) in pre-monsoon (post-monsoon) rainfall over the region, evident over the Sahel subregion. Increased surface evaporation and enhanced atmospheric moisture convergence are notable over the region of increasing WASM rainfall, while a weakened and possible alteration of large-scale atmospheric circulation features is evident over the study area.
机译:西非夏季风(WASM)降雨具有重要的社会经济意义。因此,其对气候变化的反应引起了气候科学家的极大关注。基于观测值,再分析和耦合模型比较项目第5阶段(CMIP5)模型的多模型集合平均(EnsMean)模拟,研究了WASM降雨以及一些相关的大气特征对全球变暖的响应。历史时期(1980-2005年)的结果表明,EnsMean合理地再现了WASM降雨的特征,以及高层热带东风急流(TEJ)和中层非洲东风急流(AEJ)的强度和位置。在全球变暖的背景下,EnsMean展现了空间降雨格局的局部未来变化;具体而言,在中东部(西部)萨赫勒地区,统计上有明显的增加(减少)。同样,该年度周期显示该区域的季风前(季风后)降雨量减少(增加),这在萨赫勒次区域十分明显。在WASM降雨增加的区域,地表蒸发增加和大气水分收敛增加,而在整个研究区域,大型大气环流特征的减弱和可能改变是明显的。

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  • 来源
    《Theoretical and applied climatology》 |2019年第4期|1021-1031|共11页
  • 作者

    Akinsanola A. A.; Zhou Wen;

  • 作者单位

    City Univ Hong Kong, Sch Energy & Environm, Guy Carpenter Asia Pacific Climate Impact Ctr, Hong Kong, Peoples R China;

    City Univ Hong Kong, Sch Energy & Environm, Guy Carpenter Asia Pacific Climate Impact Ctr, Hong Kong, Peoples R China;

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