IPCC

作品数:703被引量:5672H指数:39
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相关领域:天文地球环境科学与工程更多>>
相关作者:赵宗慈罗勇王绍武黄建斌戴晓苏更多>>
相关机构:中国气象局国家气候中心中国气象局中国科学院南京信息工程大学更多>>
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Relationship between South China Sea Precipitation Variability and Tropical Indo-Pacific SST Anomalies in IPCC CMIP5 Models during Spring-to-Summer Transition被引量:1
《Advances in Atmospheric Sciences》2015年第9期1303-1318,共16页HU Wenting WU Renguang 
supported by the National Key Basic Research Program of China(Grant No.2014CB953902);the support of the Hong Kong Research Grants Council(Grant No.CUHK403612);the National Natural Science Foundation of China(Grants Nos.41275081 and 41475081);a Chinese University of Hong Kong direct grant(Grant No.4052057);the support of a Chinese Academy of Sciences project(Grant No.XDA11010402);the National Natural Science Foundation of China(Grant Nos.41305065 and 41305068);the support of the State Key Laboratory of Tropical Oceanography,South China Sea Institute of Oceanology of Chinese Academy of Sciences(Grant No.LTO1203)
The present study evaluates the precipitation variability over the South China Sea(SCS) and its relationship to tropical Indo-Pacific SST anomalies during spring-to-summer transition(April–May–June,AMJ) simulate...
关键词:atmosphere–ocean interaction South China Sea CMIP5 models spring-to-summer transition 
Constraining Anthropogenic CH_4 Emissions in Nanjing and the Yangtze River Delta,China,Using Atmospheric CO_2 and CH_4 Mixing Ratios被引量:7
《Advances in Atmospheric Sciences》2014年第6期1343-1352,共10页SHEN Shuanghe YANG Dong XIAO Wei LIU Shoudong Xuhui LEE 
supported by the Ministry of Education of China (Grant PCSIRT);the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD);the National Natural Science Foundation of China (Grant No.31100359);the Natural Science Foundation of Jiangsu Province (Grant No.BK2011830);the Ningbo Planning Project of Science and Technology (Grant No.2012C50044)
Methane (CH4) emissions estimated with the Intergovernmental Panel on Climate Change (IPCC) inventory method at the city and regional scale are subject to large uncertainties.In this study,we determined the CH4:C...
关键词:METHANE IPCC inventory atmospheric mixing ratio city region 
Diurnal Cycles of Precipitation over Subtropical China in IPCC AR5 AMIP Simulations被引量:6
《Advances in Atmospheric Sciences》2013年第6期1679-1694,共16页原韦华 
jointly supported by the Major National Basic Research Program of China(973 Program)on Global Change(Grant No.2010CB951902);the National Natural Science Foundation of China(Grant Nos.41221064 and 41205053);the China R&D Special Fund for Public Welfare Industry(meteorology)(Grant No.GYHY201306068)
Atmospheric Intercomparison Project simulations of the summertime diurnal cycle of precipitation and low-level winds over subtropical China by Intergovernmental Panel on Climate Change Fifth Assessment Report models w...
关键词:diurnal rainfall variation convective and stratiform rainfall IPCC AR5 models 
Precipitation-Surface Temperature Relationship in the IPCC CMIP5 Models被引量:7
《Advances in Atmospheric Sciences》2013年第3期766-778,共13页吴仁广 陈洁鹏 温之平 
supported by the National Key Basic Research Program of China(Grant No.2009CB421404);the National Natural Science Foundation of China(Grant No.41175076);the Fundamental Research Funds for the Central Universities(Grant No.11lgjc10);the support of a Direct Grant of the Chinese University of Hong Kong(Grant No.2021105);a Hong Kong Research Grants Council Project(CUHK No.403612)
Precipitation and surface temperature are two important quantities whose variations are closely related through various physical processes. In the present study, we evaluated the precipitation-surface temperature (P-...
关键词:precipitation-surface temperature relationship CMIP5 models seasonal dependence 
Shortwave Cloud Radiative Forcing on Major Stratus Cloud Regions in AMIP-type Simulations of CMIP3 and CMIP5 Models被引量:6
《Advances in Atmospheric Sciences》2013年第3期884-907,共24页张祎 李建 
supported by the Major National Basic Research Program of China(973 Program)on Global Change(Grant No.2010CB951902);the National Natural Science Foundation of China(Grant No.41221064);the Basic Scientific Research and Operation Foundation of CAMS(Grant No.2010Z003)
Cloud and its radiative effects are major sources of uncertainty that lead to simulation discrepancies in climate models. In this study, shortwave cloud radiative forcing (SWCF) over major stratus regions is evaluat...
关键词:shortwave cloud radiative forcing CMIP stratus clouds IPCC 
Projections of the East Asian Winter Monsoon under the IPCC AR5 Scenarios Using a Coupled Model:IAP_FGOALS被引量:5
《Advances in Atmospheric Sciences》2012年第6期1200-1214,共15页魏科 包庆 
supported by the National Basic Research Program of China(973 Program)(Grant Nos.2010CB428603 and 2012CB417203);the National Natural Science Foundation of China (Grant No.41175041)
Responses of the East Asian winter monsoon (EAWM) in future projections were studied based on two core future projections of CMIP5 in coordinated experiments with the IAP-coupled model FGOALS2-s. The projected chang...
关键词:East Asian winter monsoon CMIP AO stratospheric polar vortex FGOALS 
Simulations of the 100-hPa South Asian High and Precipitation over East Asia with IPCC Coupled GCMs被引量:9
《Advances in Atmospheric Sciences》2006年第3期375-390,共16页周宁芳 俞永强 钱永甫 
The South Asian High (SAH) and precipitation over East Asia simulated by 11 coupled GCMs associated with the forthcoming Intergovernmental Panel on Climate Change's (IPCC) 4th Assessment Report are evaluated. The...
关键词:South Asian High East Asian summer rainfall Coupled GCMs 
A Coupled Model Study on the Intensification of the Asian Summer Monsoon in IPCC SRES Scenarios被引量:2
《Advances in Atmospheric Sciences》2005年第6期798-806,共9页Min WEI 
The Asian summer monsoon is an important part of the climate system. Investigating the response of the Asian summer monsoon to changing concentrations of greenhouse gases and aerosols will be meaningful to understand ...
关键词:asian summer monsoon climate change IPCC SRES scenarios 
The Change of North China Climate in Transient Simulations Using the IPCC SRES A2 and B2 Scenarios with a Coupled Atmosphere-Ocean General Circulation Model被引量:32
《Advances in Atmospheric Sciences》2003年第5期755-766,共12页布和朝鲁 Ulrich CUBASCH 林永辉 纪立人 
supported by the Key Project of the Chinese Academy of Sciences(KZCX2-SW-210);the Key Project of the Chinese Academy of Sciences(KZCX2-203);the National Key Programme for Developing Basic Sciences(G1998040904).
This paper applies the newest emission scenarios of the sulfur and greenhouse gases, namely IPCC SRES A2 and B2 scenarios, to investigate the change of the North China climate with an atmosphere-ocean coupled general ...
关键词:North China Climate change SEASONALITY IPCC SRES A2 and B2 scenarios 
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