supported by the National Natural Science Foundation of China (41275120, 41605047);the Shanghai Cooperation Organization Science and Technology Partnership (2017E01032);the Special Foundation for Asian Regional Cooperation (Climate Reconstruction of Tian Shan in China, Kyrgyzstan and Tajikistan);the Autonomous Region Youth Science and Technology Innovation Talents Training Project (qn2015bs025)
Reconstructing the hydrological change based on dendrohydrological data has important implications for understanding the dynamic distribution and evolution pattern of a given river. The widespread, long-living conifer...
Supported by Natural Science Foundation of China(41275120,41271120,41301041);Strategic Science and Technology Planning Project of Institute of Geographic Sciences and Natural Resources Research of Chinese Academy of Sciences(2012ZD001)~~
Based on two tree-ring maximum latewood density (MXD) chronologies of Picea schrenkiana from the Manas River Basin, Xinjiang, the response characteristics of MXD to climate variation was discussed. Correlation analy...
This research was supported by the National Natural Science Foundation of China (Grant Nos. 41275120, 41271120, and 41301041) and "135" Strategic Research Project of IGSNRR, CAS (No. 2012ZD001). Ring-density experiment supports from the Laboratory for Climate Studies, China Meteorological Administration are also appreciated.
The influence of temperature and precipitation on maximum latewood density (MXD) was mainly discussed in this paper, based on the samples of Picea schrenkiana from the Manas River Basin, Xinjiang, China. The correla...