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Intensified Springtime Deep Convection over the South China Sea and the Philippine Sea Dries Southern China

机译:南海和菲律宾海域春季春季深对流的加剧

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Springtime rainfall, accounting for 25-40% of the annual rainfall in southern China, exerts great agricultural and socioeconomic impacts on the region. In the recent decades, southern China has experienced a significant declining trend of precipitation in boreal spring. Meanwhile, precipitation has increased over the South China Sea and the Philippine Sea (SCS-PhS). This paper presents observational and modeling evidences suggesting that the intensified latent heating released by the convection over SCS-PhS leads to suppressed springtime rainfall over southern China. Moisture budget analysis indicates that the drying trend over southern China is due mainly to weakened convergence of moisture flux, which is controlled by a heat-induced anomalous overturning circulation reinforced by the convection over SCS-PhS. Further idealized simulations support the feature that the heat-induced overturning circulation and its corresponding anomalous cyclone can be well established in several days under the spring mean flow condition. Thus, this rapid dynamic process is associated with both the intraseasonal-to-interannual variations and the long-term change of the springtime rainfall over southern China.
机译:春季降雨占中国南部年降雨量的25-40%,对该地区产生了巨大的农业和社会经济影响。在最近的几十年中,中国北方地区的北方春季降水经历了明显的下降趋势。同时,南中国海和菲律宾海(SCS-PhS)的降水增加。本文提供的观测和建模证据表明,对流在SCS-PhS上释放的潜在潜热加剧导致中国南部春季降雨受到抑制。水分收支分析表明,华南地区的干燥趋势主要是由于水分通量收敛性减弱,这是由SCS-PhS上对流加强的热致异常翻转环流控制的。进一步的理想化模拟支持以下特征:在春季平均流量条件下,几天内就可以很好地建立热诱发的倾覆环流及其相应的异常旋风。因此,这种快速的动态过程与中国南部季节内​​的年际变化和春季降雨的长期变化有关。

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