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CN 11-1768/O4

中国东南部与川渝陕甘地区夏季降水 30~60天CISO的反相现象
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国家重点基础研究发展计划(973项目)2013CB430202;国家自然科学基金项目41175062;江苏省青蓝工程创新团队项目;江苏高校优势学科建设工程资助项目PAPD


Out-of-Phase Relationship of 30-60 Day Oscillations of Mean Climatological Summertime Rainfall between Southeastern China and the Sichuan-Chongqing-Shaanxi-Gansu Region
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    摘要:

    利用1979~2010年NCEP/NCAR逐日再分析资料和我国753站逐日降水资料,研究了中国东南部和川渝陕甘地区夏季降水30~60天气候季节内振荡(Climatological IntraSeasonal Oscillation,CISO)的反相现象。结果显示两个区域夏季降水CISO在7月中旬之前存在显著的反相关系,且在传播特征上有明显差异。川渝陕甘地区降水局地低频振荡显著,中国东南部降水CISO北传特征清晰。低频环流分析表明,对流层低层低频槽、脊的更替形成了川渝陕甘地区降水CISO的“驻相”振荡,低频气旋式、反气旋式环流位置的移动则产生了中国东南部降水CISO的北传。CISO垂直环流显示上升支与下沉支正好处于川渝陕甘地区与中国东南部,较好地反映了低频降水在两区域的相反变化。中国东南部、长江中下游与川渝陕甘地区三者之间存在动力学上的关联,这可部分地解释川渝陕甘地区和中国东南部之间降水CISO的反相关系。这种反相关系的形成还与气候态下的西太平洋副热带高压和贝加尔湖附近大陆高压脊的季节内变化有关。揭示中国东南部与川渝陕甘地区之间降水CISO的反相现象对于丰富人们对我国夏季风区低频振荡局地特征的认识和理解降水季节内振荡产生机制有重要意义。

    Abstract:

    Mean climatological intra-seasonal (i.e., 30-60 day) oscillations in rainfall (hereafter, CISO) have been investigated using the NCEP/NCAR daily reanalysis and daily rainfall data of 753 stations from 1979 to 2010. The results demonstrate an interesting phenomenon: an out-of-phase relationship exists between the intra-seasonal oscillations (ISO) of rainfall in southeastern China (SEC) and the Sichuan-Chongqing-Shaanxi-Gansu region (CYSG). In particular, strengthening of rainfall in SEC is accompanied by weakening of rainfall in CYSG. The low-frequency oscillation of summertime rainfall in CYSG appears to vary locally, whereas that in SEC appears to propagate in the meridional direction. No zonal propagation of CISO in rainfall was found in either area. The CISO in rainfall in both SEC and CYSG were found to be related to migratory low-frequency circulations that traverse the southeastern part of China. However, the CISO in rainfall in the CYSG are associated with replacement of low-frequency circulations between an anticyclonic ridge and a cyclonic trough northeast of the Tibetan Plateau. Vertical motion facilitates the out-of-phase variations of the CISO in rainfall between SEC and CYSG. Furthermore, examinations of Rossby wave propagation using the Rossby wave theory show that the energy of low-frequency eddies propagates intrinsically westward to CYSG from the middle-lower reaches of the Yangtze River (MLYR), indicating a dynamic relationship between SEC, MLYR, and CYSG in terms of CISO rainfall. This relationship may partly explain the out-of-phase relationship between SEC and CYSG. This out-of-phase relationship is also associated with both the temporal variation of the western Pacific subtropical high and the ridges around Lake Baikal at 500-hPa geopotential height. Phase locking of ISO occurs in East Asian monsoon activity and the contributions of CISO rainfall to total rainfall are non-negligible; therefore, knowledge of the out-of-phase relationship of CISO in rainfall between SEC and CYSG is of great importance for better understanding of the local characteristics of ISO and the mechanisms underlying ISO in rainfall.

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焦敏,管兆勇.中国东南部与川渝陕甘地区夏季降水 30~60天CISO的反相现象.大气科学,2014,38(1):45~60 Jiao Min, Guan Zhaoyong. Out-of-Phase Relationship of 30-60 Day Oscillations of Mean Climatological Summertime Rainfall between Southeastern China and the Sichuan-Chongqing-Shaanxi-Gansu Region. Chinese Journal of Atmospheric Sciences (in Chinese),2014,38(1):45~60

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  • 收稿日期:2012-07-27
  • 最后修改日期:2013-04-08
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  • 在线发布日期: 2013-12-25
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