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影响陕西夏季旱涝的北半球前期大气环流特征
  • ISSN号:1006-7639
  • 期刊名称:干旱气象
  • 时间:2012.12.12
  • 页码:546-554
  • 分类:P462.2[天文地球—大气科学及气象学]
  • 作者机构:[1]Meteorological Observatory of Yunnan, Kunming 650034 China, [2]Department of Atmospheric Science, Yunnan University, Kunming 650091 China, [3]Guizhou Institute of Mountainous Environment and Climate, Guiyang 550002 China
  • 相关基金:National Natural Science Foundation of China(41075072,41065004); National Natural Science Foundation of China-Yunnan Province Joint Foundation(U0833602); Specialized Project for Forecasters in Yunnan Province(YB201202); Project for Fourth Program of Undergraduates in Yunnan Province(ynuy201154); Integration and Demonstration of Techniques for Mitigating and Controlling Eruptive Disasters in Southwest China,a project of National Science and Technology Support for the 12th Five-Year Economic Development(2012BAD20B06)
  • 相关项目:南极大气海冰变化对低纬度云贵高原旱涝的影响
中文摘要:

Based on the reanalysis data of monthly mean global SST and wind from the NCEP/NCAR and the observation data of rain seasons in 124 stations of Yunnan province from 1961 to 2006, we applied the analytical methods of correlation analysis and composite analysis and a significance testing method to two sets of samples of average differences. The goal is to investigate into the influence of the Southern Hemispheric(SH) SST on the summer precipitation in Yunnan from January to May so as to identify the key time and marine regions. Physical mechanisms are obtained by analyzing the influence of sea level wind and the key marine regions on the precipitation during Yunnan’s rain season.Results show that there is indeed significant relationship between the SST in SH and summer precipitation in Yunnan.The key areas for influencing the summer precipitation are mainly distributed in a region called "West Wind Drift" in the SH, including the Southeast Indian, southern Australia, west coast of eastern Pacific off Chile, Peru and the southwest Atlantic Magellan. Besides, the most significant marine region is the west coast of Chile and Peru(cold-current areas of the eastern Pacific). Diagnostic analysis results also showed that monsoons in the Bay of Bengal, a cross-equatorial flow in the Indian Ocean near the equator and southwest monsoon in India weaken during the warm phase of the Peruvian cold current in the eastern Pacific. Otherwise, they strengthen.

英文摘要:

Based on the reanalysis data of monthly mean global SST and wind from the NCEP/NCAR and the observation data of rain seasons in 124 stations of Yunnan province from 1961 to 2006, we applied the analytical methods of correlation analysis and composite analysis and a significance testing method to two sets of samples of average differences. The goal is to investigate into the influence of the Southern Hemispheric(SH) SST on the summer precipitation in Yunnan from January to May so as to identify the key time and marine regions. Physical mechanisms are obtained by analyzing the influence of sea level wind and the key marine regions on the precipitation during Yunnan's rain season.Results show that there is indeed significant relationship between the SST in SH and summer precipitation in Yunnan.The key areas for influencing the summer precipitation are mainly distributed in a region called "West Wind Drift" in the SH, including the Southeast Indian, southern Australia, west coast of eastern Pacific off Chile, Peru and the southwest Atlantic Magellan. Besides, the most significant marine region is the west coast of Chile and Peru(cold-current areas of the eastern Pacific). Diagnostic analysis results also showed that monsoons in the Bay of Bengal, a cross-equatorial flow in the Indian Ocean near the equator and southwest monsoon in India weaken during the warm phase of the Peruvian cold current in the eastern Pacific. Otherwise, they strengthen.

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期刊信息
  • 《干旱气象》
  • 中国科技核心期刊
  • 主管单位:中国气象局
  • 主办单位:中国气象局兰州干旱气象研究所 中国气象学会干旱气象学委员会
  • 主编:张书余
  • 地址:甘肃省兰州市东岗东路2070号
  • 邮编:730020
  • 邮箱:ghs-ghqx@sina.com
  • 电话:0931-4670216-2270
  • 国际标准刊号:ISSN:1006-7639
  • 国内统一刊号:ISSN:62-1124/P
  • 邮发代号:
  • 获奖情况:
  • 1992年获中国气象局首届全国优秀气象期刊三等奖,甘肃省新闻出版局首届优秀内部期刊奖,2001年获《CAJ-CD规范》执行优秀期刊
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  • 中国中国科技核心期刊
  • 被引量:6370