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Titlebook: Analysis and Modelling of Water Supply and Demand Under Climate Change, Land Use Transformation and ; The Water Resource C Katharina Fricke

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楼主: dentin
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Water Balance Model,ity and uncertainty is assessed to identify the most important parameters for which the according input dataset are described. Before applying the water balance model, its accuracy is evaluated with different measures and against other datasets and model results.
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Research Area,nomous Region (Xīnjiāng Wéiwú’ěr Zìzhìqū), the most northwestern province of PR China and close to Central Asia. Xinjiang belongs to the dry temperate zone and is characterised by two large basins, the Tarim and Junggar Basin with the Taklamakan and Gurbantünggüt Desert, respectively, which are sepa
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Water Balance Model, the hydrological system: Bare soil evaporation, transpiration by vegetation, processes related to ice and snow (snow accumulation and snow melt), surface runoff, groundwater recharge, and finally river runoff at the catchment outlet. These are described in the next sections, then the model sensitiv
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Summary and Outlook,ical and water management systems for future megacities. Some of the inherent constraints and challenges are discussed, along with possible measures to overcome them. After evaluating and discussing the models’ function and its results, a final focus is laid on its transferability and the possibilit
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Springer Theseshttp://image.papertrans.cn/a/image/156238.jpg
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https://doi.org/10.1007/978-3-319-01610-8Hydrological Modelling; Northwest China; Socio-econorretric Modelling; Water Resources; Water Supply and
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978-3-319-37647-9Springer International Publishing Switzerland 2014
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https://doi.org/10.1007/978-3-031-05175-3nomous Region (Xīnjiāng Wéiwú’ěr Zìzhìqū), the most northwestern province of PR China and close to Central Asia. Xinjiang belongs to the dry temperate zone and is characterised by two large basins, the Tarim and Junggar Basin with the Taklamakan and Gurbantünggüt Desert, respectively, which are sepa
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