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Variability of Summer Rainfall in Northeast China and Its Connection with Spring Rainfall Variability in the Huang-Huai Region and Indian Ocean SST

机译:东北地区夏季降水的变化及其与黄淮地区和印度洋海表温度的春季降水变化的联系

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摘要

In this work, the variability of summer [June-August (JJA)] rainfall in northeast China is examined and its predictors are identified based on observational analyses and atmospheric modeling experiments. At interannual time scales, the summer rainfall anomaly in northeast China is significantly correlated with the rainfall anomaly over the Huang-Huai region (32 degrees-38 degrees N, 105 degrees-120 degrees E) in late spring (April-May). Compared with climatology, an earlier (later) rainy season in the Huang-Huai region favors a wet (dry) summer in northeast China. Also, this connection has strengthened since the late 1970s. In addition to the impact of the sea surface temperature anomaly (SSTA) in the tropical Indian Ocean, the local soil moisture anomalies caused by the rainfall anomaly in the Huang-Huai region in late spring generate summer general circulation anomalies, which contribute to the rainfall anomaly in northeast China. As a result, when compared with the SSTA, the rainfall anomaly in the Huang-Huai region in late spring can be used as another and even better predictor for the summer rainfall anomaly in northeast China.
机译:在这项工作中,研究了中国东北地区夏季[6-8月]降雨的变化性,并基于观测分析和大气模拟实验确定了其预报因素。在年际尺度上,东北地区的夏季降水异常与春末(4月至5月)黄淮地区(北纬32度至38度,东经105度至120度)的降水异常显着相关。与气候相比,黄淮地区的雨季较早(较晚),而东北地区则倾向于较湿的夏季。此外,自1970年代后期以来,这种联系得到了加强。除了热带印度洋海表温度异常(SSTA)的影响外,黄淮地区春季晚些时候的降雨异常引起的局部土壤水分异常还产生了夏季总环流异常,这有助于降雨。中国东北的异常。结果,与SSTA相比,黄淮地区晚春的降水异常可以作为东北地区夏季降水异常的另一个甚至更好的预测指标。

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