Responses of the Asian Summer Monsoon(ASM) in future projections have been studied based on two core future projections of phase five of the Coupled Model Intercomparison Project(CMIP5) coordinated experiments with the IAP-coupled model FGOALS_s2(the Flexible Global Ocean-Atmosphere-Land System Model).The projected changes of the ASM in climatological mean and interannual variability were respectively reported.Both the South Asian Summer Monsoon(SASM) and the East Asian Summer Monsoon(EASM) were intensified...
【英文摘要】
Responses of the Asian Summer Monsoon(ASM) in future projections have been studied based on two core future projections of phase five of the Coupled Model Intercomparison Project(CMIP5) coordinated experiments with the IAP-coupled model FGOALS_s2(the Flexible Global Ocean-Atmosphere-Land System Model).The projected changes of the ASM in climatological mean and interannual variability were respectively reported.Both the South Asian Summer Monsoon(SASM) and the East Asian Summer Monsoon(EASM) were intensified...
【基金】
supported by the Chinese Acad-emy of Sciences (XDA05110303);
the National Basic Research Program of China (973 Program,2012CB417203);
the National Natural Science Foundation of China (40805038 and 41023002)
【更新日期】
2012-02-23
【分类号】
P467
【正文快照】
1 Introduction The Asian summer monsoon (ASM) is the strongest summer monsoon system in the world, and more than half of the world’s population inhabits the region of the ASM. The agriculture, economy, and society across the ASM regions are critically in