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《Journal of Glaciology and Geocryology》 2012-02
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Experimental Study of Calculating Method of River Seepage in Middle and Upper Reaches of the Heihe River

HU Xing-lin1,2,3,XIAO Hong-lang2,3,LAN Yong-chao2,3,WANG Jing1,DING Hong-wei2,3,4(1.Hydrology and Water Resources Bureau of Gansu Province,Lanzhou Gansu 730000,China;2.Key Laboratory of Inland River Ecological Hydrology and Basin,Cold and Arid Regions Environmental and Engineering Research Institute,Chinese Academy of Sciences,Lanzhou Gansu 730000,China;3.Key Laboratory of Heihe Ecological Hydrology and Basin of Gansu Province,Lanzhou Gansu 730000,China;4.Institute of Hydrogeology and Engineering Geology, Gansu Bureau of Geology and Mineral Exploration,Zhangye Gansu 734000,China)  
With river cross-section method,river seepage in the middle and upper reaches of the Heihe River was experimentally studied.It is found that the composition of channel rock,river geometry morphological and human activities changing output and input water pattern greatly effect river seepage.River seepage remarkably changes before and after water transfer in whole basin.For instance,in the sector from Yingluoxia to Bridge 312,the seepage amount was 1.2543 × 108m3 before water transfer and is 4.3747 × 108m3 after water transfer.The smaller the river discharge,the larger the water loss rate will be.One can see that the loss rate of unit river length of each reaches follows a reciprocal manner.This conclusion is drawn from experimental analysis by contrasting the observations in the upstream and downstream cross-sections of middle and upper reaches of the Heihe River,consistent with actual situation,which can be used as basis for analyzing surface water and groundwater resources transformation in the middle and upper reaches of the Heihe River,simulating groundwater flow system,and modeling repeated utilization of water resources.The conclusion also can be used to calculate seepage amount for different simulation models.
【Fund】: 中国科学院内陆河流域生态水文重点实验室开放基金项目;中国科学院知识创新工程重要方向项目(KZCX2-YW-328);; 国家自然科学重点基金项目(90702001);国家自然科学基金项目(931468093)资助
【CateGory Index】: TV139.1
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