首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Influence of wintertime large-scale circulation on the explosively developing cyclones over the western North Pacific and their downstream effects
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Influence of wintertime large-scale circulation on the explosively developing cyclones over the western North Pacific and their downstream effects

机译:冬季大规模环流对北太平洋西部爆发性旋风的影响及其下游影响

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摘要

The relationships between large-scale wintertime circulation and extratropical cyclones that develop explosively (the so-called bomb cyclones) over the western North Pacific are investigated using Japanese long-term reanalysis project data. On a monthly basis, the East Asian winter monsoon variability strongly modulates the bomb cyclone activity in terms of its geographical distribution. When the monsoon is strong, the bomb cyclone activity tends to concentrate in the vicinity of the Kuroshio Current and the Kuroshio Extension near Japan, while when the monsoon is weak, it disperses over the broader areas. The enhancement of the monsoon increases the heat and moisture supply from warm currents, facilitating unstable conditions within the atmospheric boundary layer and intensifying baroclinicity in the lower troposphere. These factors are believed to play a role in inducing bomb cyclones, particularly along the warm currents. On submonthly timescales, the stationary Rossby wave propagation along the South Asian waveguide serves as a prominent trigger for the rapid reinforcement of synoptic-scale disturbances around Japan. When a pronounced bomb cyclone comes to its mature stage northeast of Japan, it is capable of exciting stationary Rossby waves downstream from the Asian jet exit region as vorticity forcing. The stationary wave packets developing southeastward across the North Pacific Ocean basin induce surface cyclogenesis in the vicinity of the Hawaiian Islands by leading to the equatorward advection of higher potential vorticity from the midlatitudes, bringing about the occurrence of kona storms, which cause weather hazards in Hawaii.
机译:利用日本的长期再分析项目数据,研究了大规模冬季冬季环流与北太平洋西部爆发性的温带气旋(所谓的炸弹旋风)之间的关系。从每月的角度看,东亚冬季风的变异性在其地理分布方面强烈地调节了炸弹的旋风活动。当季风强时,炸弹旋风活动倾向于集中在日本附近的黑潮洋流和黑潮延伸区附近,而当季风弱时,它会散布在更广阔的区域。季风的增强增加了来自暖流的热量和水分供应,促进了大气边界层内的不稳定条件,并加剧了对流层下层的斜压。据认为,这些因素在诱发炸弹旋风中起着一定的作用,特别是在暖流中。在每个月的时间尺度上,沿南亚波导的稳定的Rossby波传播是迅速增强日本周围天气尺度干扰的显着触发因素。当一个明显的炸弹旋风进入日本东北的成熟阶段时,它能够激发亚洲喷气机出口区域下游的平稳的Rossby波,这是涡旋强迫。横跨北太平洋海盆向东南方向发展的固定波包通过导致中纬度较高的潜在涡度向赤道对流平流,在夏威夷群岛附近引发了表层气旋作用,从而导致了科纳风暴的发生,这在夏威夷造成了天气危害。

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