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青藏高原:地球动力学与环境演变研究进展
引用本文:姚檀栋,朱立平,谈戈.青藏高原:地球动力学与环境演变研究进展[J].地理学报(英文版),2006,16(3):371-374.
作者姓名:姚檀栋  朱立平  谈戈
作者单位:中国科学院青藏高原研究所
基金项目:中国科学院知识创新工程项目,DFG "Bündelantrag" projects within the framework of a Sino-German cooperation 
摘    要:1 Introduction The TP is a spectacular field laboratory for analyzing fundamental processes of geodynamics and environmental change as well as their interrelationships (Kutzbach et al., 1993). Being the largest and highest continental plateau with a mean …

关 键 词:青藏高原  地球动力学  环境演变  德国

Tibetan Plateau: Geodynamics and Environmental Evolution--The cooperative projects based upon the memorandum of CAS and DFG
YAO Tandong,ZHU Liping,TAN Ge.Tibetan Plateau: Geodynamics and Environmental Evolution--The cooperative projects based upon the memorandum of CAS and DFG[J].Journal of Geographical Sciences,2006,16(3):371-374.
Authors:YAO Tandong  ZHU Liping  TAN Ge
Institution:Institute of Tibetan Plateau Research, CAS, Beijing 100085, China
Abstract:The Tibetan Plateau (TP) plays a unique role in Earth System Sciences. It represents a key area to understand not only basic geodynamic processes linked with the formation and uplift of mountains and plateaus, but also the interaction between plateau uplift and environmental changes. Over the last 50 million years the formation of the TP has considerably influenced the global climate and monsoon system.Moreover, the TP proves to be extremely sensitive to present-day global change phenomena. Based upon the foundation of the new Institute of Tibetan Plateau Research (ITP) by the Chinese Academy of Sciences (CAS) and through the Memorandum signed by the CAS and DFG (Deutschen Forschungsgemeinschaft), both CAS and DFG provide opportunities to intensify TP research and to develop coordinated research programs. "The Tibetan Plateau - Geodynamics and Environmental Evolution" consisting of one big projects funded by CAS and five projects funded by DFG that cover the pre- and early-collision history of the TP, the Palaeogene/Neogene uplift and climatic dynamics as well as the Late Quaternary and recent environmental and climatic changes on the TP. The projects are linked through several levels of interactions.
Keywords:Tibetan Plateau  Sino-Germany cooperation  geodynamics  environmental evolution
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