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Rapid merger and recyclogenesis of twin extratropical cyclones leading to heavy precipitation around Japan on 9-10 October 2001

机译:2001年10月9日至10日,双温带气旋的快速合并和循环发生导致日本各地出现强降水

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The significance of twin extratropical cyclones (in contrast to twin tropical cyclones) has not yet been fully recognized in weather forecasting and analysis of heavy precipitation. This study investigated successive sets of twin extratropical cyclones over the Yellow and East China Seas (YECS) and over the Japan Sea and South Coast areas of the Japanese Islands (JSSC) on 9-10 October 2001. Although these twin cyclones were not strong, they led to heavy precipitation in Japan. The southern low of the YECS twin cyclones, which accompanied a moist tongue, rapidly merged with the northern cold low, resulting in the formation of a moist tongue across the Japanese Islands, causing heavy precipitation. This rapid merger is explained by a coupling of cold upper- and warm lower-level lows in a contact binary rotation system. Subsequently, the JSSC twin cyclones became newly organized. The northern deep low of the JSSC twin cyclones formed north of an upper-level jet by the merger of the YECS cyclones, while the southern shallow low newly formed around the occlusion point south of the upper-level jet. The sensitivity experiments of successive sets of the twin cyclones show that condensational heating and topographic effects contribute to the formation of the twin structures. The northern low of the JSSC twin cyclones is amplified by latent heating, while the southern low is hardly amplified. The topography of the Japanese Islands results in intensification of the upward flow and cyclonical flow via topographic convergence and blocking of horizontal flow.
机译:在天气预报和强降水分析中,尚未完全认识到双温带气旋的重要性(与双热带气旋相反)。这项研究于2001年10月9日至10日对黄海和东海(YECS)以及日本群岛的日本海和南海岸地区(JSSC)上的连续双系温带气旋进行了调查。他们导致了日本的强降雨。伴随着湿润舌头的YECS双旋风的南部低点迅速与北部寒冷低点融合,导致整个日本群岛上形成了湿润的舌头,导致大量降水。这种快速合并是通过触点二进制旋转系统中冷的上层低点和温暖的下层低点的耦合来解释的。随后,JSSC双气旋被重新组织。通过YECS气旋的合并,JSSC双气旋的北部深低点形成在上空喷气机的北部,而南部浅浅低点在上空喷气机以南的闭塞点附近新形成。连续的双旋风分离器的敏感性实验表明,凝结加热和形貌效应有助于双晶结构的形成。 JSSC双旋风分离器的北部低点通过潜热被放大,而南部低点几乎没有被放大。日本群岛的地形通过地形收敛和阻塞水平流而导致向上流动和气旋流动的加剧。

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