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Designing flows to resolve human and environmental water needs in a dam-regulated river

机译:设计流量以解决大坝调节河流中的人类和环境用水需求

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Navigating trade-offs between meeting societal water needs and supporting functioning ecosystems is integral to river management policy. Emerging frameworks provide the opportunity to consider multiple river uses explicitly, but balancing multiple priorities remains challenging. Here we quantify relationships between hydrologic regimes and the abundance of multiple native and nonnative fish species over 18 years in a large, dryland river basin in southwestern United States. These models were incorporated into a multi-objective optimization framework to design dam operation releases that balance human water needs with the dual conservation targets of benefiting native fishes while disadvantaging nonnative fishes. Predicted designer flow prescriptions indicate significant opportunities to favor native over nonnative fishes while rarely, if ever, encroaching on human water needs. The predicted benefits surpass those generated by natural flow mimicry, and were retained across periods of heightened drought. We provide a quantitative illustration of theoretical predictions that designer flows can offer multiple ecological and societal benefits in human-altered rivers.
机译:在满足社会用水需求和支持功能性生态系统之间权衡取舍是河流管理政策不可或缺的部分。新兴的框架提供了明确考虑多种河流用途的机会,但要平衡多个优先事项仍然具有挑战性。在这里,我们量化了美国西南部大型旱地流域18年内水文状况与多种本地和非本地鱼类物种丰富度之间的关系。这些模型被整合到一个多目标优化框架中,以设计大坝运行方案,以平衡人类的水需求与有益于本地鱼类同时不利于非本地鱼类的双重保护目标。预测的设计人员水量处方表明,有很多机会偏爱本地鱼类而不是非本地鱼类,而很少(如果有的话)侵犯人类对水的需求。预测的收益超过了自然流动模拟所产生的收益,并且在干旱加剧期间得以保留。我们提供了理论预测的定量例证,即设计人员流量可以在人类改变的河流中提供多种生态和社会效益。

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