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Coordinated influences of the tropical and extratropical intraseasonal oscillations on the 10-30-day variability of the summer rainfall over southeastern China

机译:热带和卓越渗透振荡对中国东南部夏季降雨10-30天变异性的协调影响

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This study explores the spatial variations and physical mechanisms of 10-30-day rainfall anomalies over southeastern China based on daily station-observed rainfall data for the period 1979-2015. Empirical orthogonal function analysis shows that the dominant spatial distribution of 10-30-day rainfall anomalies is a monopole pattern over the south of the middle and lower reaches of the Yangtze River Valley (SMLY). Lead-lag composites reveal that the evolution of such a monopole pattern depends on the coordinated influences of 10-30-day atmospheric intraseasonal oscillations (ISOs) from the tropics and mid-high latitudes. In the upper troposphere, the southeastward-propagating Rossby wave train from the mid-high latitudes, which presents as anomalous anticyclones and cyclones alternating over eastern Europe to southeastern coastal area of China, induces strong ascents (descents) over the SMLY via vorticity advection. Circulation anomalies associated with tropical ISO over East Asia/Western North Pacific trigger a vertical cell with strong updraft (downdraft) over the SMLY and downdraft (updraft) to the south, further enhancing the ascents (descents) over the SMLY, forming the wet (dry) phases of 10-30-day rainfall anomalies. Moreover, due to the meridional non-uniformity of ISO-related diabatic heating along the Indian Ocean longitudes, an anticyclone (cyclone) is generated over the central Indian-northern Bay of Bengal, which tends to anchor the anomalous ascents (descents) over the SMLY through its interaction with the intraseasonal Rossby wave from mid-high latitudes, thus favoring the persistence of wet (dry) phases of the 10-30-day SMLY rainfall anomalies.
机译:本研究探讨了中国东南部10-30天的空间变化和物理机制,基于1979 - 2015年的日常站观察到的降雨数据,探讨了中国东南部的降雨异常。经验正交函数分析表明,10-30天降雨异常的主导空间分布是长江谷的中下游南部的单极模式(SMLY)。铅滞复合材料表明,这种单极模式的演化取决于热带和中高纬度的10-30天大气渗透振荡(ISOS)的协调影响。在对流层上层,从中高纬度地区的东南传播罗斯比波列车,它呈现为异常的反气旋和飓风在东欧到中国东南沿海地区,通过涡流平流诱导剧烈的升级(下降)。与东亚/西北太平洋的热带ISO相关的循环异常触发了一个垂直的细胞,在南方的斯普利和下游(上升气流)上用强大的上升(向下),进一步增强了剧烈的升高(下降),形成潮湿(干燥)阶段10-30天的降雨异常。此外,由于沿着印度洋长期的ISO相关的型型糖尿病加热的子宫内延长,孟加拉中央印度北部湾(Cyclone)产生了一种抗气旋(Cyclone),这倾向于将异常升级(下降)锚定通过与中高纬度的互动速度波的互动相互作用,从而有利于10-30天的湿润(干燥)阶段的持续增长剧烈降雨异常。

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