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Decreasing Trend in Global Land Monsoon Precipitation over the Past 50 Years Simulated by a Coupled Climate Model  
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【英文篇名】 Decreasing Trend in Global Land Monsoon Precipitation over the Past 50 Years Simulated by a Coupled Climate Model
【下载频次】 ★★
【作者】 李红梅; 周天军; 李超;
【英文作者】 LI Hongmei 1; 2; ZHOU Tianjun 1; and LI Chao 3 1 State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics; Institute of Atmospheric Physics; Chinese Academy of Sciences; Beijing 100029 2 Graduate University of the Chinese Academy of Sciences; Beijing 100049 3 International Max Planck Research School on Earth System Modeling; and Max Planck Institute for Meteorology; Hamburg; Germany 20146;
【作者单位】 State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics; Institute of Atmospheric Physics; Chinese Academy of Sciences; Graduate University of the Chinese Academy of Sciences; International Max Planck Research School on Earth System Modeling; Max Planck Institute for Meteorology;
【文献出处】 Advances in Atmospheric Sciences , 大气科学进展(英文版), 编辑部邮箱 2010年 02期  
期刊荣誉:ASPT来源刊  中国期刊方阵  CJFD收录刊
【英文关键词】 monsoon precipitation; decreasing trend; coupled climate model; external forcings;
【摘要】 The authors examine the effects of external forcing agents such as greenhouse gases (GHGs) and aerosols, as well as solar variability and ozone, on global land monsoon precipitation by using a coupled climate model HadGEM1, which was developed by the Met Office Hadley Centre for Climate Research. The results indicate that HadGEM1 performs well in simulating the observed decreasing trend of global land monsoon precipitation over the past 50 years. This trend mainly occurred in the Northern Hemisphere and is ...
【英文摘要】 The authors examine the effects of external forcing agents such as greenhouse gases (GHGs) and aerosols, as well as solar variability and ozone, on global land monsoon precipitation by using a coupled climate model HadGEM1, which was developed by the Met Office Hadley Centre for Climate Research. The results indicate that HadGEM1 performs well in simulating the observed decreasing trend of global land monsoon precipitation over the past 50 years. This trend mainly occurred in the Northern Hemisphere and is ...
【基金】 supported by National Natural Science Foundation of China under GrantNos. 40625014, 40821092, and 90711004; the National Basic Research Program of China (2006CB403603); the China Meteorological Administration (GYHY200706010,GYHY200706005)
【更新日期】 2010-04-02
【分类号】 P468.024
【正文快照】 1. Introduction The monsoon is an important aspect of the global climate system. About two-thirds of humanity inhab- its the monsoon region; the economy and society across the region are greatly influenced by the evolution and variability of the monsoon (

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