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Fuzzy Representation of Environmental Flow in Multi-Objective Risk Analysis of Reservoir Operation

机译:水库运作多目标风险分析环境流量的模糊表示

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In the context of worldwide water shortage, environmental flow is the key to alleviating the negative environmental impact of reservoir operation. In reality, there exists a range for the stream flow suitable for the survival and reproduction of aquatic organisms. However, most of current studies set it to a fixed value, which leads to unreasonable resource allocations. In this study, we proposed a fuzzy representation of environmental flow by using the fuzzy theory and the ecological hydraulic radius. Furthermore, we used the Three Gorges-Gezhouba cascade reservoirs as a study case and Four Major Chinese Carps as indicator species. In addition, a multi-objective operation optimization model was established, which was solved by the Evolver Palisade software. Finally, a multi-objective risk analysis method was proposed based on the design reliability and risk rate of various benefit operations. The results show that: (1) Based on the environmental flow membership function, flow ranges suitable for the aquatic organism survival and reproduction at specific locations can be determined to guide reservoir discharge. (2) Taking environmental flow membership as an optimization objective rather than a constraint is conducive to formulating environmentally friendly reservoir operation schemes and making more rational use of water resources. (3) The multi-objective risk analysis can avoid the one-sidedness of single-objective risk analysis and provide more basis for reservoir management. Ecological demands have long been a factor considered when formulating reservoir operation schemes. Therefore, following the environmentally friendly operation scheme is helpful to protect the environment and maximize the overall benefits of reservoirs.
机译:在全球水资源短缺的背景下,环境流动是减轻水库运作负面环境影响的关键。实际上,存在适合于生物生物的存活和再现的流流程的范围。然而,大多数当前研究将其设置为固定值,这导致不合理的资源分配。在这项研究中,我们通过使用模糊理论和生态液压半径提出了环境流的模糊表示。此外,我们使用三峡 - 葛洲坝级联水库作为学习案例,四大中国鲤鱼作为指示物种。此外,建立了多目标操作优化模型,由Evolver Palisade软件解决了。最后,提出了一种基于各种益处操作的设计可靠性和风险率的多目标风险分析方法。结果表明:(1)基于环境流量占函数,可以确定适用于在特定位置处的水生生物生存和繁殖的流量范围以引导储存器放电。 (2)将环境流量成员作为优化目标而不是约束,有利于制定环保储层运行计划,并制定更多的水资源利用水资源。 (3)多目标风险分析可以避免单目标风险分析的片面性,并为水库管理提供更多基础。长期以来,生态需求是在制定储层操作方案时考虑的因素。因此,在环保操作方案之后,有助于保护环境并最大限度地提高水库的整体益处。

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