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Winter precipitation variability over Korean Peninsula associated with ENSO

机译:与ENSO相关的朝鲜半岛冬季降水变化

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In this study, winter precipitation variability associated with the El Nino-Southern Oscillation (ENSO) over the Korean Peninsula was investigated using a 5-pentad running mean data because significant correlation pattern cannot be revealed using seasonal-mean data. It was found a considerably significant positive correlation between Nino3 sea-surface temperature and precipitation during early winter (from Mid-November to early-December), when the correlation coefficient is close to 0.8 in early-December; the correlation is distinctively weakened during late winter. It is demonstrated that such sudden intraseasonal change in relation to ENSO is associated with the presence of anticyclonic flow over the Kuroshio extension region (Kuroshio anticyclone). In early winter, there is strong southerly wind over the Korean Peninsula, which is induced by the Philippine Sea anticyclone and Kuroshio anticyclone. However, in January, although the Philippine Sea anticyclone develops further, the Kuroshio anticyclone suddenly disappears; as a result, the impact of ENSO is considerably weakened over the Korean Peninsula. These results indicate that the Kuroshio anticyclone during El Nino peak phase plays a critical role by strongly affecting Northeast Asia climate, including the Korean Peninsula. In addition, it is also found that there are distinctive interdecadal changes of the relationship between ENSO and precipitation over the Korean Peninsula. In particular, the strong correlation in early winter is clearer in the recent 30 years than that in the previous period of 1950-1979.
机译:在这项研究中,朝鲜半岛上的厄尔尼诺-南方涛动(ENSO)引起的冬季降水变异性使用5倍运行平均值数据进行了调查,因为无法使用季节性平均值数据揭示显着的相关模式。研究发现,冬季初(11月中旬至12月初),Nino3海表温度与降水之间存在显着的正相关,而12月初的相关系数接近0.8;在冬末,相关性明显减弱。事实证明,这种与ENSO有关的季节内突然变化与黑潮扩展区(黑潮反气旋)上存在反气旋流动有关。初冬时节,朝鲜半岛上有强烈的南风,这是菲律宾海反旋风和黑潮反旋风引起的。然而,在一月,尽管菲律宾海反气旋进一步发展,但黑潮反气旋突然消失了;结果,ENSO对朝鲜半岛的影响大大减弱了。这些结果表明,在厄尔尼诺现象高峰期的黑潮反气旋通过强烈影响包括朝鲜半岛在内的东北亚气候,发挥了关键作用。此外,还发现朝鲜半岛ENSO与降水之间的关系年代际变化明显。特别是,近30年来初冬的强相关性比1950-1979年的前期更明显。

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