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Titlebook: River Basin Management; Xiangzheng Deng,John Gibson Living reference work 20200th edition Water Resource.Integrated Water Management.Inte

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Management Innovation for Integrated River Basin Management,lly for the effects of water conservancy project and water price reform in Heihe River Basin. Furthermore, with comparable characters and similarities in the hydrological contexts, a comparative study between HRB and two other river basins Murray–Darling Basin (MDB) in Australia and the Colorado Riv
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Mitigating Climate Change Impacts for Optimizing Water Productivity,data measured at Yingluoxia Hydrological Station and decadal ice volume changes derived from survey maps and remote sensing images between 1960 and 2010. This study highlights the effects of glacier melting on streamflow and their future changes in the mountainous watersheds. Further, we used improv
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Oasis Agriculture: Improving Water Usage Efficiency Within River Basin,e, Jinta, and Jiuquan. There has been very limited research on the water-use efficiency for soil conservation in the lower Heihe River Basin, a typical water-scarce area where the soil conservation service plays a key role in guaranteeing the ecological safety of the northern part of China. The soil
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Optimal Water Allocation Scheme in Integrated Water-Ecosystem-Economy System,-economy system. Using Zhangye, in the middle reaches of the Heihe River Basin as the case study area, we forecasted and optimally allocated WPLE under three development scenarios, i.e., the conventional development scenario (CDS), the economy-priority development scenario (EPDS), and the environmen
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Spatiotemporal Surface of Agricultural Water Requirement for Integrated Water Resources Management,sed from 339.95 to 370.11 mm. Monthly mean AWR initially increased before decreasing in concert with crop growth, and the largest values for this index were recorded during June. Mean AWR for oilseed rape, corn, barley, and other crops all increased by 33.37, 43.75, 21.91, and 26.01 mm, respectively
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Urbanization and Industrial Transformation for Improved Water Management, growth, capital accumulation, and technical progress used as exogenous variables. Simultaneously, the land use/cover change with urbanization will back to influence water supply through the hydrological process. The results indicate that the total water consumption in the middle reach of the Heihe
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Virtual Water Flow at County-Level of the Heihe River Basin in China,rom surface water is greater than that from groundwater. The ratio of virtual surface water to virtual groundwater ranges from 1.20 to 2.91. The results for the water stress index indicated that most counties experienced water stress due to maize production. Greater attention needs to be paid to the
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