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首页> 外文期刊>Advances in Atmospheric Sciences >Possible Impacts of the Arctic Oscillation on the Interdecadal Variation of Summer Monsoon Rainfall in East Asia
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Possible Impacts of the Arctic Oscillation on the Interdecadal Variation of Summer Monsoon Rainfall in East Asia

机译:北极涛动对东亚夏季风降水年代际变化的可能影响

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The influences of the wintertime AO (Arctic Oscillation) on the interdecadal variation of summer monsoon rainfall in East Asia were examined. An interdecadal abrupt change was found by the end of the 1970s in the variation of the AO index and the leading principal component time series of the summer rainfall in East Asia. The rainfall anomaly changed from below normal to above normal in central China, the southern part of northeastern China and the Korean peninsula around 1978. However, the opposite interdecadal variation was found in the rainfall anomaly in North China and South China. The interdecadal variation of summer rainfall is associated with the weakening of the East Asia sumnaei monsoon circulation. It is indicated that the interdecadal variation of the AO exerts an influence on the weakening of the monsoon circulation. The recent trend in the AO toward its high-index polarity during the past two decades plays important roles in the land-sea contrast anomalies and wintertime precipitation anomaly. The mid- and high-latitude regions of the Asian continent are warming, while the low-latitude regions are cooling in winter and spring along with the AO entering its high-index polarity after the late 1970s. In the meantime, the precipitation over the Tibetan Plateau and South China is excessive, implying an. increase of soil moisture. The cooling tendency of the land in the southern part of Asia will persist until summer because of the memory of soil moisture. So the warming of the Asian continent is relatively slow in summer. Moreover, the Indian Ocean and Pacific Ocean, which are located southward and eastward of the Asian land, are warming from winter to summer. This suggests that the contrast between the land and sea is decreased in summer. The interdecadal decrease of the land-sea heat contrast finally leads to the weakening of the East Asia summer monsoon circulation.
机译:研究了冬季AO(北极涛动)对东亚夏季风降水年代际变化的影响。到1970年代末,AO指数的变化和东亚夏季降水的主要主成分时间序列出现了年代际突变。 1978年前后,中国中部,东北南部和朝鲜半岛的降雨异常从低于正常水平变化为高于正常水平。但是,华北和华南地区的降雨异常却出现了相反的年代际变化。夏季降水的年代际变化与东亚苏门南季风环流的减弱有关。结果表明,AO的年代际变化对季风环流的减弱有影响。在过去的二十年中,AO走向高指数极性的最新趋势在陆海对比异常和冬季降水异常中起着重要作用。亚洲大陆的中高纬度地区正在变暖,而冬季和春季低纬度地区正在降温,而AO在1970年代后期开始进入其高指数极性。同时,青藏高原和华南地区的降水过大,表明有降雨。增加土壤水分。由于对土壤水分的记忆,亚洲南部土地的降温趋势将持续到夏季。因此,夏季亚洲大陆的变暖相对较慢。此外,位于亚洲陆地的南部和东部的印度洋和太平洋从冬季到夏季都在变暖。这表明夏季陆地和海洋之间的对比度降低了。陆海热反差的年代际下降最终导致东亚夏季风环流减弱。

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