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Inter-decadal variability of summer rainfall in Eastern China detected by the Lepage test

机译:用Lepage试验检测中国东部夏季降水的年代际变化

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On the basis of the latest observational datasets, the inter-decadal changes of summer rainfall in East China in the past 50 years are analyzed using the Lepage test. The two traditional methods moving t-test and Mann-Kendall test are also performed on the rainfall data as a comparison. Results indicate four inter-decadal abrupt changes of summer rainfall that occurred near 1979, 1983, 1993, and 1999, and each of them is characterized by remarkable regional features. The abrupt change of summer rainfall around 1979 is accompanied by significant rainfall increase in Yangtze-Huai River Valley and a decrease in its flank. The one near 1983 shows similar structures of the rainfall changes to that near 1979, but with more significant changes in the South China and Northeast China (NEC). The inter-decadal change around 1993 brings a notable increase of summer rainfall to the South China; and the abrupt shift near 1999 exhibits significant decrease in summer rainfall over a large part of North China and NEC. The spatial-temporal features of the inter-decadal changes in summer rainfall are also investigated. Consistent results are observed. Moreover, results indicate that, on the inter-decadal scale, the rainfall variability mode changes from typical tripole to dipole structure since the early 1990s.
机译:根据最新的观测资料,利用Lepage检验分析了近50年来华东地区夏季降水的年代际变化。作为比较,还对降雨数据执行了两种传统的移动t检验和Mann-Kendall检验方法。结果表明,1979年,1983年,1993年和1999年左右发生了四个年代际突变,夏季降水量大,并且每个特征都有明显的区域特征。 1979年左右夏季降水的突变,伴随着长江淮流域降雨的明显增加和其侧翼的减少。 1983年附近的一次降雨的降水结构与1979年附近的相似,但华南和东北地区的降水变化更为明显。 1993年左右的年代际变化使中国南方的夏季降雨量显着增加。 1999年前后的突然变化表明,华北和NEC的大部分地区夏季降水明显减少。还研究了夏季降水年代际变化的时空特征。观察到一致的结果。此外,结果表明,在年代际尺度上,自1990年代初以来,降雨的变异性模式从典型的三极结构转变为偶极结构。

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  • 来源
    《Theoretical and applied climatology 》 |2011年第4期| p.481-488| 共8页
  • 作者单位

    LASG, Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), Beijing 100029, China,Center for Monsoon System Research (CMSR), Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), Beijing 100029, China;

    LASG, Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), Beijing 100029, China;

    Center for Monsoon System Research (CMSR), Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), Beijing 100029, China;

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