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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Relationship between interannual changes of summer rainfall over Yangtze River Valley and South China Sea-Philippine Sea: Possible impact of tropical zonal sea surface temperature gradient
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Relationship between interannual changes of summer rainfall over Yangtze River Valley and South China Sea-Philippine Sea: Possible impact of tropical zonal sea surface temperature gradient

机译:长江谷和南海菲律宾海夏季降雨际变化的关系:热带地区表面温度梯度可能影响

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摘要

This study investigates the interannual variability of rainfall over the middle and lower reaches of Yangtze River Valley (MLYRV) and that over the South China Sea and Philippine Sea (SCS-PS) during boreal summer (June-August) from 1979 to 2012. Results exhibit out-of-phase rainfall variations between the MLYRV and the SCS-PS, which is closely related to the tropical zonal sea surface temperature gradient (ZSG) between the northern Indian Ocean (NIO; 5 degrees-25 degrees N, 60 degrees-100 degrees E) and the equatorial central and eastern Pacific (CEP; 5 degrees S-5 degrees N, 180 degrees-130 degrees W). The ZSG can explain as much as 40% of the total variance of the summer rainfall over the MLYRV and the SCS-PS in the past 40 years. This is much higher than that explained by the NIO SST (24%), CEP SST (14%) and Nino-3.4 index (16%) alone. A positive ZSG between the warm NIO and the cold CEP tends to increase rainfall over the MLYRV and decrease rainfall over the SCS-PS, whereas a negative ZSG between the cold NIO and the warm CEP is generally favourable for rainfall over the SCS-PS and unfavourable for rainfall over MLYRV. The close connection between the ZSG and the out-of-phase interannual rainfall variation over the two regions can be explained by influences of the ZSG on atmospheric circulation over East Asia. A positive ZSG induces anomalous easterlies and Walker-like circulation in the tropics, which results in an anomalous subsidence and boundary layer divergence over the SCS-PS. As a result, summer rainfall decreases in this region. Meanwhile, moisture transport increases due to the anomalously strong southwesterlies along the northwestern flank of the intensified western Pacific subtropical high, providing more precipitable water to the MLYRV region. In contrast, a negative ZSG induces surface westerlies and favourable environmental condition for rainfall over the SCS-PS. Dry descending flow induced by local anomalous Hadley circulation develops over the MLYRV around 30 degrees N, which is unfavourable for rainfall over the MLYRV. The mechanism further examined using numerical experiments. These thermal-dynamical processes induced by the ZSG work together to cause the out-of-phase interannual changes of rainfall between the MLYRV and the SCS-PS, suggesting that the ZSG is highly indicative of the interannual change of summer rainfall in the two regions.
机译:本研究调查了长江谷(Mlyrv)中下游的降雨际变化,以及在1979年至2012年的Boreal Summer(June-August)的南海和菲律宾海(SCS-PS)。结果在印度印度洋(NIO; 5度-25度N,60度)之间的热带地区海面温度梯度(ZSG)与热带地区海面温度梯度(ZSG)密切相关的阶段间降雨变化。 100级e)和赤道中央和东部太平洋(CEP; 5°S-5度N,180度-130度W)。 ZSG可以在过去40年内解释夏季降雨的总差异的40%。这远远高于NIO SST(24%),CEP SST(14%)和Nino-3.4指数(16%)解释的高得多。温暖的NIO和寒冷疾病之间的阳性ZSG往往会增加含量的降雨量,并减少SCS-PS的降雨,而寒冷的NIO和温暖的CEP之间的负ZSG通常有利于SCS-PS降雨对mlyrv的降雨不利。通过ZSG对东亚大气循环的影响,可以解释ZSG与阶段异期降雨变化之间的密切连接。阳性ZSG在热带地区诱导异常的东部和类似的助行器,这导致SCS-PS上的异常沉降和边界层分歧。因此,该地区的夏季降雨降低。同时,由于沿着西北地区亚热带高压的西北部侧翼,水分运输增加了由于沿着西北部的亚热带高的侧翼,为MlyRV地区提供了更加可降水的水。相比之下,阴性ZSG诱导表面港口和良好的环境条件下降到SCS-PS。由局部异常Hadley循环引起的干燥下行流动在含有30摄氏度的含量上产生,这是对甘露出的降雨不利。使用数值实验进一步检查机制。这些由ZSG引起的热动力学过程共同努力,导致MLYRV和SCS-PS之间的降雨的异常际变化,表明ZSG非常指示两个地区夏季降雨的际变化。

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