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    Hydropower versus irrigation—an analysis of global patterns

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    Authors
    Zeng, Ruijie
    Cai, Ximing
    Ringler, Claudia
    Zhu, Tingju
    Date Issued
    2017-03
    Date Online
    2017-02
    Language
    en
    Type
    Journal Article
    Accessibility
    Open Access
    Usage rights
    CC-BY-3.0
    Metadata
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    Citation
    Zeng, Ruijie; Cai, Ximing; Ringler, Claudia; Zhu, Tingju. 2017. Hydropower versus irrigation—an analysis of global patterns. Colombo, Sri Lanka: CGIAR Research Program on Water, Land and Ecosystems (WLE). 12(3):4-6 doi: https://doi.org/10.1088/1748-9326/aa5f3f
    Permanent link to cite or share this item: https://hdl.handle.net/10568/95861
    External link to download this item: http://iopscience.iop.org/article/10.1088/1748-9326/aa5f3f/meta
    DOI: https://doi.org/10.1088/1748-9326/aa5f3f
    Abstract/Description
    Numerous reservoirs around the world provide multiple flow regulation functions; key among these are hydroelectricity production and water releases for irrigation. These functions contribute to energy and food security at national, regional and global levels. While reservoir operations for hydroelectricity production might support irrigation, there are also well-known cases where hydroelectricity production reduces water availability for irrigated food production. This study assesses these relationships at the global level using machine-learning techniques and multi-source datasets. We find that 54% of global installed hydropower capacity (around 507 thousand Megawatt) competes with irrigation. Regions where such competition exists include the Central United States, northern Europe, India, Central Asia and Oceania. On the other hand, 8% of global installed hydropower capacity (around 79 thousand Megawatt) complements irrigation, particularly in the Yellow and Yangtze River Basins of China, the East and West Coasts of the United States and most river basins of Southeast Asia, Canada and Russia. No significant relationship is found for the rest of the world. We further analyze the impact of climate variables on the relationships between hydropower and irrigation. Reservoir flood control functions that operate under increased precipitation levels appear to constrain hydroelectricity production in various river basins of the United States, South China and most basins in Europe and Oceania. On the other hand, increased reservoir evaporative losses and higher irrigation requirements due to higher potential evaporation levels may lead to increased tradeoffs between irrigation and hydropower due to reduced water availability in regions with warmer climates, such as India, South China, and the Southern United States. With most reservoirs today being built for multiple purposes, it is important for policymakers to understand and plan for growing tradeoffs between key functions. This will be particularly important as climate mitigation calls for an increase in renewable energy while agro-hydrological impacts of climate change, population and economic growth and associated dietary change increase the need for irrigated food production in many regions round the world.
    CGIAR Author ORCID iDs
    Claudia Ringlerhttps://orcid.org/0000-0002-8266-0488
    Other CGIAR Affiliations
    Water, Land and Ecosystems
    Subjects
    HYDROLOGY; IRRIGATION
    Countries
    China; India
    Regions
    Southern Asia; Eastern Asia
    Collections
    • WLE Journal Articles [922]

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