52 research outputs found

    Climate change and water resources planning: A somewhat skeptical view

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    In Mehrotra, R.; Soni, B.; Bhatia, K. K. S. (Eds.), Integrated water resources management for sustainable development: Theme papers, Rapporteurs' reports and Addresses. Roorkee, India: National Institute of Hydrolog

    Application of the SLURP basin model

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    In Al-Soufi, R. W. (Ed.), Proceedings of the Workshop on Hydrologic and Environmental Modelling in the Mekong Basin, 11-12 September 2000, Phnom Penh. Phnom Penh, Cambodia: Mekong River Commission. Technical Support Divisio

    Integrating atmospheric and vegetation succession data in a macroscale hydrological model

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    In Wheater, H.; Kirby, C. (Eds.), Hydrology in a changing environment: Proceedings of the British Hydrological Society International Conference, Exeter, July 1998. Volume I. Chichester, UK: John Wiley & Son

    Hydrological modeling of the Mekong River Basin

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    In International Water Management Institute (IWMI). Annual report 1999-2000. Colombo, Sri Lanka: International Water Management Institute (IWMI

    Water productivity from integrated basin modeling

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    Comparing estimates of actual evapotranspiration from satellites, hydrological models, and field data: a case study from Western Turkey

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    An overview of an experiment in which 8 different methods of estimating actual evaporation and transpiration were compared using a common database. Methods based on field data, hydrological models, and satellite data were used and the objectives were to compare results and to assess the utility of each method for various applications

    Integrated basin modeling

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    River basins are complex areas, combining the natural processes of precipitation, evapotranspiration, surface water and groundwater runoff with man-made features such as dams and reservoirs, diversions and irrigation schemes, and industrial and urban water uses. Computer models may be constructed to represent these natural and man-made processes. Such models are used to help understand processes that are difficult to measure (such as evaporation) and to study the effects of changes in land cover, water management or climate on the natural and man-made processes
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