古气候重建

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Million-year-old groundwater revealed by krypton-81 dating in Guanzhong Basin,China被引量:11
《Science Bulletin》2017年第17期1181-1184,共4页Jie Li Zhonghe Pang Guo-Min Yang Jiao Tian Amin L.Tong Xiang-Yang Zhang Shui-Ming Hu 
supported by the National Natural Science Foundation of China(41602276 and 21225314);the China Postdoctoral Science Foundation Funded Project(2015M581168);the National Key R&D Program of China(2016YFA0302200);the Special Fund for Land and Resources Research in the Public Interest(201511046)
Groundwater age,defined as the mean subsurface residence time spent isolated from the atmosphere,is of crucial significance for managing water resources and industrial waste.It is also very useful for understanding su...
关键词:地下水年龄 关中盆地 中国 古气候重建 污染物运移 滞留时间 工业废物 水文地质 
Reconstruction of the Northern Hemisphere temperature from 1500 to 1949 by optimal regional averaging method
《Chinese Science Bulletin》2014年第34期4873-4880,共8页Cong Wang Ning Huang Jing Guo Bao Yang 
supported by the NationalBasic Research Program of China(2010CB950104);the Innovative Research Groups of the National Natural Science Foundation of China(11121202)
The rareness and inhomogeneity of the data points cause difficulties in the reconstruction of past average temperature. Optimal regional averaging is a method that can overcome these difficulties and obtain the averag...
关键词:平均温度 平均法 北半球 古气候重建 优化 温度数据 数据点 不均匀性 
On linking climate to Chinese dynastic change: Spatial and temporal variations of monsoonal rain被引量:19
《Chinese Science Bulletin》2010年第1期77-83,共7页ZHANG DeEr1, LI Hong-Chun2,3, KU Teh-Lung2,4 & LU LongHua5 1 National Climate Center, Beijing 100081, China 2 Department of Earth Sciences & Research Center of Ocean Environment and Technology, Cheng-Kung University, Tainan 70101, Taiwan, China 3 School of Geographical Sciences, Southwest University of China, Chongqing 400715, China 4 Department of Earth Sciences, University of Southern California, Los Angeles, CA 90089, USA 5 Chinese Academy of Meteorological Sciences, Beijing 100081, China 
supported by the Science Council of Taiwan (NSC 97-2628-M-006-014);the National Natural Science Foundation of China (Grant Nos 40672202 and 40599424)
The causal correlation or linkage between the East Asian Monsoon (EAM) intensity and rise/fall of Chinese dynasties recently proposed by high-resolution paleoclimate reconstructions is examined in detail. Aside from m...
关键词:古气候重建 东亚季风 强降雨 时空变化 中国东部地区 连接 EAM 高分辨率 
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