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IMPACT OF ENSO ON THE PRECIPITATION OVER CHINA IN WINTER HALF-YEARS
  • ISSN号:1004-4965
  • 期刊名称:Journal of Tropical Meteorology
  • 时间:2015.6.1
  • 页码:161-170
  • 分类:P426.6[天文地球—大气科学及气象学]
  • 作者机构:[1]State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics, Institute of Atmospheric Physics, CAS, Beijing 100029 China, [2]University of Chinese Academy of Sciences, Beijing 100049 China, [3]Chinese Academy of Meteorological Sciences, Beijing 100081 China
  • 相关基金:Major National Basic Research Program of China(973 Program)on Global Change(2010CB951902); National Natural Science Foundation of China(41221064); China R&D Special Fund for Public Welfare Industry(Meteorology:GYHY201306068)
  • 相关项目:东亚副热带季风变异机理
中文摘要:

Using hourly rainfall intensity, daily surface air temperature, humidity and low-level dew point depressions at55 stations in the southeast coast of China, and sea surface temperature from reanalysis in the coastal region, this paper analyzes the connection between peak intensity of extreme afternoon short-duration rainfall(EASR) and humidity as well as surface air temperature. The dependency of extreme peak intensity of EASR on temperature has a significant transition. When daily highest surface temperature is below(above) 29°C, the peak rainfall intensity shows an ascending(descending) tendency with rising temperature. Having investigated the role of moisture condition in the variation of EASR and temperature, this paper discovered that the decrease of peak rainfall intensity with temperature rising is connected with the variation of relative humidity. At higher temperatures, the land surface relative humidity decreases dramatically as temperature further increases. During this process, the sea surface temperature maintains basically unchanged, resulting in indistinct variations of water vapor content at seas. As water vapor over land is mainly contributed by the quantitative moisture transport from adjacent seas, the decline of relative humidity over land will be consequently caused by the further rise of surface air temperature.

英文摘要:

Using hourly rainfall intensity, daily surface air temperature, humidity and low-level dew point depressions at55 stations in the southeast coast of China, and sea surface temperature from reanalysis in the coastal region, this paper analyzes the connection between peak intensity of extreme afternoon short-duration rainfall(EASR) and humidity as well as surface air temperature. The dependency of extreme peak intensity of EASR on temperature has a significant transition. When daily highest surface temperature is below(above) 29°C, the peak rainfall intensity shows an ascending(descending) tendency with rising temperature. Having investigated the role of moisture condition in the variation of EASR and temperature, this paper discovered that the decrease of peak rainfall intensity with temperature rising is connected with the variation of relative humidity. At higher temperatures, the land surface relative humidity decreases dramatically as temperature further increases. During this process, the sea surface temperature maintains basically unchanged, resulting in indistinct variations of water vapor content at seas. As water vapor over land is mainly contributed by the quantitative moisture transport from adjacent seas, the decline of relative humidity over land will be consequently caused by the further rise of surface air temperature.

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期刊信息
  • 《热带气象学报》
  • 北大核心期刊(2011版)
  • 主管单位:广东省气象局
  • 主办单位:广州热带海洋气象研究所
  • 主编:薛纪善
  • 地址:广州市东山区福今路6号
  • 邮编:510080
  • 邮箱:LLSH@grmc.gov.cn
  • 电话:020-39456476 39456435
  • 国际标准刊号:ISSN:1004-4965
  • 国内统一刊号:ISSN:44-1326/P
  • 邮发代号:
  • 获奖情况:
  • 中国自然科学核心期刊,中国科学引文数据库源刊,美国气象学会MGA源刊
  • 国内外数据库收录:
  • 美国剑桥科学文摘,日本日本科学技术振兴机构数据库,中国中国科技核心期刊,中国北大核心期刊(2004版),中国北大核心期刊(2008版),中国北大核心期刊(2011版),中国北大核心期刊(2014版),中国北大核心期刊(2000版)
  • 被引量:10739