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首页> 外文期刊>Water resources research >Designing Eco-Friendly Water Intake Portfolios in a Tropical Andean Stream Network
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Designing Eco-Friendly Water Intake Portfolios in a Tropical Andean Stream Network

机译:在热带安第斯河流网中设计生态友好的取水设施

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摘要

A In view of the rapid proliferation of water infrastructures worldwide, balancing human and ecosystem needs for water resources is a critical environmental challenge of global significance. While there is abundant literature on the environmental impacts of individual water infrastructures, little attention has been paid to their cumulative effects in river networks, which may have basin-to-global impacts on freshwater ecology. Here we developed a methodological framework based on Pareto frontier analysis for optimizing trade-offs between water withdrawal and ecological indicators. We applied this framework to a mountainous Ecuadorian headwater river network that is part of a continental water transfer for supply and demand management to optimize ecological conditions and the operation of 11 water intake structures used to provide potable water to the city of Quito. We found that the current water intake configuration has an important effect on the total length of fifth-order stream sections (65% reduction compared to premanaged condition) and isolates 70.9% of the headwater stream length. The Pareto frontier analysis identified water intake portfolios (i.e., different combinations of intake sites) that decreased ecological impacts by 7.8% points (pp) and 13.0 pp for connectivity and stream order change, respectively, while meeting Quito's water demands. Additional portfolios accounting for monthly variability in water demand and resources further decrease the ecological impact up to 9.6 pp in connectivity and 13.4 pp in stream order. These eco-friendly portfolios suggest that adaptive management at basin level may help optimize water withdrawal to fulfill urban demands while preserving ecological integrity.
机译:A鉴于全球水基础设施的迅速扩散,平衡人类和生态系统对水资源的需求是具有全球意义的重大环境挑战。尽管有大量关于单个水基础设施的环境影响的文献,但很少关注它们在河网中的累积影响,这可能对流域到全球的淡水生态产生影响。在这里,我们开发了基于帕累托边界分析的方法框架,以优化取水量与生态指标之间的权衡。我们将此框架应用于厄瓜多尔山区水源河网,该河网是大陆供水系统的一部分,用于供需管理,以优化生态条件和11个用于向基多市提供饮用水的取水结构的运行。我们发现,当前的进水构造对五阶水流段的总长度(与预先管理的条件相比减少了65%)有重要影响,并且隔离了70.9%的源水流长度。帕累托边界分析确定了取水量组合(即取水点的不同组合),它们在满足基多的用水需求的同时,分别将连通性和溪流变化的生态影响降低了7.8%(pp)和13.0 pp。考虑到水需求和资源每月变化的其他投资组合,进一步降低了对生态的影响,连通性高达9.6 pp,溪流顺序高达13.4 pp。这些生态友好的投资组合表明,流域一级的适应性管理可能有助于优化取水量,以满足城市需求,同时保持生态完整性。

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  • 来源
    《Water resources research》 |2019年第8期|6946-6967|共22页
  • 作者单位

    Univ Paris Saclay Univ Paris Sud CNRS UMR EGCE IRD Gif Sur Yvette France;

    Cornell Univ Dept Biol & Environm Engn Ithaca NY USA;

    Cornell Univ Dept Ecol & Evolutionary Biol Ithaca NY 14850 USA;

    Empresa Publ Metropolitana Agua Potable & Saneami Quito Ecuador;

    Fondo Protecc Agua Quito Ecuador;

    Univ Grenoble Alpes CNRS IRD IGE Grenoble France;

    Univ Paris Saclay Univ Paris Sud CNRS UMR EGCE IRD Gif Sur Yvette France|Cornell Univ Dept Ecol & Evolutionary Biol Ithaca NY 14850 USA;

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