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首页> 外文期刊>Advances in Atmospheric Sciences >The Characteristics of Longitudinal Movement of the Subtropical High in the Western Pacific in the Pre-rainy Season in South China
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The Characteristics of Longitudinal Movement of the Subtropical High in the Western Pacific in the Pre-rainy Season in South China

机译:华南前汛期西太平洋副热带高压纵向运动特征

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摘要

Using the NCEP/NCAR reanalysis data, the China rainfall data of the China Meteorological Administration, and the sea surface temperature (SST) data of NOAA from 1951-2000, the features of the anomalous longitudinal position of the subtropical high in the western Pacific (SHWP) in the pre-rainy season in South China and associated circulation and precipitation are studied. Furthermore, the relationship between SHWP and SST and the eastern Asian winter monsoon is also investigated. Associated with the anomalous longitudinal position of SHWP in the pre-rainy season in South China, the flow patterns in both the middle and lower latitudes are different. The circulation anomalies greatly influence the precipitation in the pre-rainy season in South China. When the SHWP is in a west position (WP), the South China quasi-stationary front is stronger with more abundant precipitation there. However, when the SHWP is in an east position (EP), a weaker front appears with a shortage of precipitation there. There exists a good relationship between the longitudinal position of SHWP and SST in the tropical region. A negative correlation can be found both in the central and eastern tropical Pacific and the Indian Ocean. This means that the higher (lower) SST there corresponds to a west (east) position' of SHWP. This close relationship can be found even in the preceding autumn and winter. A positive correlation appears in the western and northern Pacific and large correlation coefficient values also occur in the preceding autumn and winter. A stronger eastern Asian winter monsoon will give rise to cooler SSTs in the Kuroshio and the South China Sea regions and it corresponds to negative SST anomaly (SSTA) in the central and eastern Pacific and positive SSTA in the western Pacific in winter and the following spring. The whole tropical SSTA pattern, that is, positive (negative) SSTA in the central and eastern Pacific and negative (positive) SSTA in the western Pacific, is favorable to the WP (EP) of SHWP.
机译:利用NCEP / NCAR再分析数据,中国气象局的中国降水数据以及1951-2000年的NOAA的海表温度(SST)数据,得出了西太平洋副热带高压纵向位置的异常特征(研究了华南雨季前的SHWP和相关的环流与降水。此外,还研究了SHWP和SST与东亚冬季风之间的关系。与华南雨季前期SHWP的异常纵向位置相关,中低纬度的水流模式不同。环流异常极大地影响了华南前汛期的降水。当SHWP处于西部位置(WP)时,华南准静止锋更强,那里的降水更加丰富。但是,当SHWP位于东部位置(EP)时,会出现较弱的锋面,那里的降水不足。在热带地区,SHWP和SST的纵向位置之间存在良好的关系。在中部和东部热带太平洋和印度洋都发现负相关。这意味着较高(较低)的SST对应于SHWP的西(东)位置。即使在之前的秋冬季节也可以找到这种密切的关系。正相关性出现在西太平洋和北太平洋,并且较大的相关系数值也出现在之前的秋季和冬季。东亚冬季季风的增强将导致黑潮和南海地区的SST降低,这对应于中太平洋和东太平洋的SST负值(SSTA)以及冬季和随后的春季西太平洋的SSTA值正值。整个热带SSTA模式,即中太平洋和东太平洋的正(负)SSTA和西太平洋的负(正)SSTA,都有利于SHWP的WP(EP)。

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