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首页> 外文期刊>Journal of the Meteorological Society of Japan >Consistency of interdecadal variation in the summer monsoon over eastern China and heterogeneity in springtime surface air temperatures
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Consistency of interdecadal variation in the summer monsoon over eastern China and heterogeneity in springtime surface air temperatures

机译:中国东部夏季风年代际变化与春季地表气温非均匀性的一致性

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This study investigates the consistency of interdecadal variations in the East Asian summer monsoon (EASM) and changes in the heterogeneous structure of sea/land springtime surface air temperature (SAT) over eastern China and the adjacent ocean (including the South China Sea and part of the Western Pacific Ocean). A profile of the summer mean meridional wind over eastern China for the past 40 years shows a coherent interdecadal weakening trend for the EASM. The decadal-scale (11-year running mean) summertime (June-August) wind and springtime (March-May) SAT fields are decomposed using the empirical orthogonal function (EOF) method. The results indicate that both the leading eigenvector of the decadal-scale meridional wind and that for the SAT over East Asia account for more than 70% of the total variance. Their time coefficients show a similar trend, with the transition from negative to positive values occurring around 1978; i.e., the EASM turned from a stronger phase to a weaker phase around 1978. The springtime sea/land SAT distribution before and after 1978 also showed a shift in interdecadal trends. Therefore, the south-loworth-high nature of the principal component of springtime SAT over eastern China is closely related to the progressive weakening of the EASM. Our results suggest that within the context of the regional impact of global climate change, heterogeneous changes in the regional springtime sea/land SAT in eastern Asia might in part have led to a weakening of the effect of sea/land thermal driving on the EASM.
机译:这项研究调查了东亚夏季风(EASM)年代际变化的一致性以及中国东部和邻近海洋(包括南中国海和部分海域)海/陆春季地表气温(SAT)的非均质结构变化。西太平洋)。在过去的40年中,中国东部夏季平均经向风的剖面图显示了EASM的年代际减弱趋势。使用经验正交函数(EOF)方法分解了十年尺度(11年运行平均值)的夏季(6月至8月)风和春季(3月至5月)的SAT场。结果表明,十年尺度子午风的主导特征向量和东亚SAT的主导特征向量均占总方差的70%以上。它们的时间系数显示出类似的趋势,1978年前后出现了从负值到正值的转变;即EASM在1978年左右从强阶段转变为弱阶段。1978年前后的春季海/陆SAT分布也显示了年代际趋势的转变。因此,中国东部春季SAT的主要分量的南低/北高特征与EASM的逐渐减弱密切相关。我们的结果表明,在全球气候变化对区域的影响的背景下,东亚区域春季海/陆SAT的异质变化可能部分导致了海/陆热驱动对EASM的影响减弱。

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