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Changes in tropical cyclone activity that has affected Korea since 1999

机译:自1999年以来影响韩国的热带气旋活动的变化

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This study investigated the annual frequencies of tropical cyclones (TCs) that affected Korea during summer (June–September) over the last 60 years. Using a statistical change-point analysis, we found that significant regime shifts occurred in 1999 and 2005, as well as in the mid-1960s and mid-1980s. Focusing on the recent TC activities, this study analyzed the differences between the high-frequency period from 1999 to 2004 (P1) and the low-frequency period from 2005 to 2010 (P2). The analysis reveals that TCs during P2 tended to occur, move, and recurve farther to the west in the western North Pacific (WNP). This is because the WNP high expanded farther to the west during P2 compared to P1; as a result, more TCs made landfall on the west coast of the Korean peninsula (KP) during P2. In contrast, during P1, TCs tended to make landfall more frequently on the south coast of the KP. This implies that the recent TC tracks landing on the KP shifted gradually to the northwest. The analysis of streamlines at 500 hPa show that an anomalous northerly strengthened in the KP due to the formation of an anomalous anticyclone and an anomalous cyclone to the west and east of the KP, respectively. These anomalies played a role in blocking TCs from moving to the KP. At 850 hPa, the anomalous anticyclonic circulation was strengthened in most of WNP. This circulation formed an unfavorable environment for TC genesis, reducing the TC genesis frequency during P2. We verified this low convective activity in the WNP during P2 by analyzing the outgoing longwave radiation, vertical wind shear, and sea surface temperature.
机译:这项研究调查了过去60年夏季(6月至9月)影响韩国的热带气旋(TC)的年度频率。使用统计变化点分析,我们发现1999年和2005年以及1960年代中期和1980年代中期发生了重大的政权转移。本研究着眼于近期的TC活动,分析了1999年至2004年的高频期(P1)和2005年至2010年的低频期(P2)之间的差异。分析显示,P2期间的TC倾向于在北太平洋西部(WNP)的西边发生,移动并向后弯曲。这是因为在P2期间,WNP的高点比P1向西扩展。结果,在P2期间,更多的TC登陆了朝鲜半岛(KP)的西海岸。相反,在P1期间,TC倾向于在KP的南海岸更频繁地登陆。这意味着,最近登陆KP的TC轨道逐渐向西北偏移。在500 hPa的流线分析表明,由于在KP西部和东部分别形成了反常的反气旋和反常的气旋,使得KP向北偏北加强。这些异常在阻止TC迁移到KP方面发挥了作用。在850 hPa,大部分WNP的反气旋异常循环都得到了加强。这种循环形成了TC发生的不利环境,从而降低了P2期间TC发生的频率。通过分析传出的长波辐射,垂直风切变和海面温度,我们验证了P2期间WNP的这种低对流活动。

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