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1944-2005年黑河流域径流量变化特征及趋势
引用本文:王钧,蒙吉军. 1944-2005年黑河流域径流量变化特征及趋势[J]. 地理学报(英文版), 2007, 17(3): 327-338. DOI: 10.1007/s11442-007-0327-z
作者姓名:王钧  蒙吉军
作者单位:College of Environmental Sciences, Peking University; Key Laboratory of Analysis and Simulation of EarthSurface Processes, Ministry of Education; Beijing 100871, China
基金项目:National Natural Science Foundation of China, No.40335046
摘    要:The Heihe River drainage basin is one of the endangered ecological regions of China. The shortage of water resources is the bottleneck, which constrains the sustainable development of the region. Many scholars in China have done researches concerning this problem. Based on previous researches, this paper analyzed characteristics, tendencies, and causes of annual runoff variations in the Yingluo Gorge (1944-2005) and the Zhengyi Gorge (1954-2005), which are the boundaries of the upper reaches, the middle reaches, and the lower reaches of the Heihe River drainage basin, by wavelet analysis, wavelet neural network model, and GIS spatial analysis. The results show that: (1) annual runoff variations of the Yingluo Gorge have principal periods of 7 years and 25 years, and its increasing rate is 1.04 m^3/s.10y; (2) annual runoff variations of the Zhengyi Gorge have principal periods of 6 years and 27 years, and its decreasing rate is 2.25 m^3/s.10y; (3) prediction results show that: during 2006-2015, annual runoff variations of the Yingluo and Zhengyi gorges have ascending tendencies, and the increasing rates are respectively 2.04 m^3/s.10y and 1.61 m^3/s.10y; (4) the increase of annual runoff in the Yingluo Gorge has causal relationship with increased temperature and precipitation in the upper reaches, and the decrease of annual runoff in the Zhengyi Gorge in the past decades was mainly caused by the increased human consumption of water resources in the middle researches. The study results will provide scientific basis for making rational use and allocation schemes of water resources in the Heihe River drainage basin.

关 键 词:径流变化 小波分析 小波神经网络模型 GIS空间分析 黑河
收稿时间:2007-02-02
修稿时间:2007-02-022007-03-20

Research on runoff variations based on wavelet analysis and wavelet neural network model
Wang Jun,Meng Jijun. Research on runoff variations based on wavelet analysis and wavelet neural network model[J]. Journal of Geographical Sciences, 2007, 17(3): 327-338. DOI: 10.1007/s11442-007-0327-z
Authors:Wang Jun  Meng Jijun
Affiliation:College of Environmental Sciences, Peking University; Key Laboratory of Analysis and Simulation of Earth Surface Processes, Ministry of Education; Beijing 100871, China
Abstract:The Heihe River drainage basin is one of the endangered ecological regions of China. The shortage of water resources is the bottleneck, which constrains the sustainable development of the region. Many scholars in China have done researches concerning this problem. Based on previous researches, this paper analyzed characteristics, tendencies, and causes of annual runoff variations in the Yingluo Gorge (1944–2005) and the Zhengyi Gorge 1954–2005), which are the boundaries of the upper reaches, the middle reaches, and the lower reaches of the Heihe River drainage basin, by wavelet analysis, wavelet neural network model, and GIS spatial analysis. The results show that: (1) annual runoff variations of the Yingluo Gorge have principal periods of 7 years and 25 years, and its increasing rate is 1.04 m3/s·10y; (2) annual runoff variations of the Zhengyi Gorge have principal periods of 6 years and 27 years, and its decreasing rate is 2.25 m3/s·10y; (3) prediction results show that: during 2006–2015, annual runoff variations of the Yingluo and Zhengyi gorges have ascending tendencies, and the increasing rates are respectively 2.04 m3/s·10y and 1.61 m3/s·10y; (4) the increase of annual runoff in the Yingluo Gorge has causal relationship with increased temperature and precipitation in the upper reaches, and the decrease of annual runoff in the Zhengyi Gorge in the past decades was mainly caused by the increased human consumption of water resources in the middle researches. The study results will provide scientific basis for making rational use and allocation schemes of water resources in the Heihe River drainage basin. Foundation: National Natural Science Foundation of China, No.40335046 Author: Wang Jun, specialized in modeling approaches and applications in geo-science.
Keywords:annual runoff variations   wavelet analysis   wavelet neural network model   GIS spatial analysis   HeiheRiver drainage basin
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