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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Influential role of inter-decadal explosive cyclone activity on the increased frequency of winter storm events in Hokkaido, the northernmost island of Japan
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Influential role of inter-decadal explosive cyclone activity on the increased frequency of winter storm events in Hokkaido, the northernmost island of Japan

机译:跨越爆炸式旋风活动对日本最北部北海道冬季风暴事件频率增加的影响力

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摘要

This study examined explosively developing extratropical cyclone activity in the vicinity of Japan in boreal winter from 1979/1980 to 2016/2017 mainly using the Japanese 55-year Reanalysis data. The in situ observation and reanalysis data revealed increased frequencies of both strong winds and heavy precipitation in Hokkaido, the northernmost island of Japan, after the end of the last century, which is consistent with the fact that the cyclones migrating along the Kuroshio Current (KC cyclones) have tended to approach the Hokkaido region in recent years. To examine factors controlling the cyclone track and rapid development, we performed composite analyses of the northwards migrating type (N type) and eastwards migrating type (E type) KC cyclones. In the N-type cyclone, wave trains prevailed along the polar front and subtropical jets over the Eurasian continent, thereby forming an upper-level trough (ridge) to the west (east) of the cyclone. An upper-level divergence accompanied by rapid development of the N-type cyclone excited wave packets downstream as a Rossby wave source, leading to further reinforcement of the upper-level ridge east of the cyclone. The anomalous anticyclone with a barotropic nature is capable of forcing the cyclone track to shift northwards. Furthermore, a combination of the N-type cyclone and the anomalous anticyclone to its east facilitates moisture import into the cyclone system from lower latitudes, contributing to enhanced moisture flux convergence. In reality, diabatic heating in the vicinity of the cyclone centre is larger in the N-type cyclone than in the E-type one. It is also suggested that the pronounced Rossby wave propagation along the subtropical jet related to a climate regime shift in the Tropics is responsible for the recent increase in the number of N-type cyclones.
机译:本研究在1979/1980年至2016/2017年,研究了在Boreal Winter附近的爆炸性开发了日本附近至2016/2017。主要使用日本55年的重新分析数据。原位观察和再分析数据显示,在上个世纪末,日本最北部的北海道北海道强风和沉重降水的频率增加,这与沿着Kuroshio Current迁移的旋转的事实一致(KC飓风)近年来倾向于接近北海道地区。为了检查控制旋风轨道和快速发展的因素,我们对北迁移型(N型)和Eastwards迁移类型(E型)KC旋风的复合分析进行了综合分析。在N型旋风内,波动阵列沿着欧亚大陆的极地前部和亚热带喷射,从而形成旋风分离器的西部(东部)的上层槽(脊)。上游的高级发散伴随着下游的N型旋风激发波包作为Rossby波源的快速发展,从而进一步加强了旋风分离器的上层脊。具有波高性性质的异常式抗气旋能够强迫旋风轨道向北移动。此外,N型旋风分离器和异常的反周气旋对其东部的组合有助于从低纬度进口到旋风系统中,有助于提高水分通量收敛。实际上,在旋风中心附近的糖尿病加热在n型旋风中比E型旋风分离器更大。还建议沿着热带气候制度换档相关的亚热带射流的明显的罗斯比波传播是近期N型旋风器数量的增加。

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