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Impact of interannually varying background circulation on summertime wave patterns and tropical cyclone tracks in the western North Pacific

机译:年际变化的背景环流对北太平洋西部夏季波型和热带气旋路径的影响

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This study analyzed summertime wave patterns in the western North Pacific by separating them into those during El Nino (EN) and La Nina (LN) years for 1979-2015. The background flow revealed that in the EN years, the subtropical high was weaker and the East Asian summer monsoon trough was deeper and extended farther southeastward. The composite results indicated that in the EN years, tropical cyclone (TC) tracks were more solid and stably associated with wave pattern propagation routes because the circulation anomalies were significantly stronger. However, in the LN years, when the wave patterns were weak under the shorter and less organized monsoon trough due to the enhanced subtropical high, the TC tracks and cyclonic anomalies were irregular and sporadic. Further background flow analyses indicated that the EN circulation favored the development of the monsoon trough and east-west expansion and contraction of the subtropical ridge, whereas the stronger subtropical ridge dominated most western North Pacific areas in the LN years. Therefore, the monsoon trough was weaker in the LN years and induced recurving TCs to take more scattered routes near Taiwan and China's east coast. Therefore, Taiwan experienced more rainfall during recurving TC periods in the LN years than in the EN years. For the straight-moving TCs passing through Taiwan, rainfall was concentrated over southern Taiwan in the EN years but more evenly distributed in the LN years. Thus, background flow changes strongly affect wave patterns and TCs.
机译:这项研究通过将北太平洋西部的夏季波型分成1979-2015年的El Nino(EN)和La Nina(LN)年,分析了夏季的波型。背景流表明,在EN年中,亚热带高压较弱,东亚夏季风槽更深,向东南延伸得更远。综合结果表明,在EN年中,热带气旋(TC)轨道更加牢固,并与波动模式传播路径稳定相关,因为环流异常明显更强。然而,在LN年中,由于副热带高压升高,在较短且井井有条的季风槽下波型较弱时,TC径迹和气旋异常是不规则且零星的。进一步的背景流量分析表明,EN环流有利于季风槽的发展以及亚热带海脊的东西向扩张和收缩,而更强的亚热带海脊在LN年中主导了大多数西北太平洋地区。因此,在LN年,季风谷较弱,并导致反演的TC在台湾和中国东海岸附近走更多条分散的路线。因此,台湾在LN年反演TC期间的降雨量比EN年份多。对于直行的TC而言,在EN年份降雨集中在台湾南部,而在LN年份则更为平均。因此,背景流量的变化会强烈影响波形和TC。

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