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Water-energy-ecosystem nexus: Balancing competing interests at a run-of-river hydropower plant coupling a hydrologic-ecohydraulic approach

机译:水能 - 生态系统nexus:平衡河流水电站耦合水文 - 生态液流方法的竞争利益

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The water-energy-ecosystem nexus represents a complex interlinkage that depends on the flow regime type. Inadequate environmental flows setting may adversely affect the riverine ecosystem and/or hydropower revenue. This issue was addressed quantitatively in this study by considering a run-of-river hydropower plant located in a river of the Tagus basin characterised by a pluvial winter flow regime. Three models: a hydropower, a hydrologic, and an ecohydraulic model were integrated to estimate the influence of nine hydrologically-based environmental flow methods on hydropower production, flow regime alteration and fish habitat conditions. The target fish species was a native cyprinid fish, the Iberian barbel (Luciobarbus bocagei), considering three life-stages. Results show that high environmental flow releases did not necessarily provide the highest habitat availability and suitability at all seasons and fish life-stages. The adult life-stage resulted in being more vulnerable to water diversion, particularly during Spring season. Shallow-water hydromorphological units suffered the highest habitat loss. Some of the environmental flow methods demonstrated inconsistent results over seasons and fish life-stages by either allowing for higher environmental flow releases whereas highly restricting hydropower production or vice versa. However, results also suggest that combined and dynamic environmental flow methods promoted reasonable hydropower production while inducing less than 50% habitat loss and flow regime alteration, regarding the three life-stages over all seasons. This study contributes to the identification of the relationship between conflicting objectives, such as hydropower production and riverine ecosystem conservation. Also, it provides strategic recommendations on energy-ecosystem regulation for sustainable hydropower operation. This study also highlights the importance of considering seasonal flow discharge variability when analysing the water-energy-ecosystem nexus.
机译:水能 - 生态系统Nexus代表复杂的互连,取决于流动制度类型。环境流量不足环境可能会对河流生态系统和/或水电收入产生不利影响。通过考虑位于塔比盆地河流的河流河流河流的河流,其特征在本研究中,在这项研究中定量地解决了这个问题。三种型号:水电,水文和生态液流模型被整合,以估算九种水文环境流动方法对水电生产,流动制度改变和鱼类栖息地条件的影响。考虑三个寿命,目标鱼类是一种天然的胞质鱼类,伊比利亚·杠杆(Luciobarbus Bocagei),。结果表明,高环境流量释放并不一定在所有季节和鱼类生命阶段提供最高的栖息地可用性和适用性。成年人的生命阶段导致更容易受到进球的群体,特别是在春季期间。浅水水平单位损失最高的栖息地。一些环境流程方法通过允许更高的环境流量释放,而散发出季节和鱼类寿命的结果不一致,而高度限制水电生产,反之亦然。然而,结果还表明,组合和动态的环境流动方法促进了合理的水力发制,同时诱导少于50%的栖息地损失和流动制度,关于所有季节的三个生命阶段。本研究有助于确定冲突目标之间的关系,例如水电生产和河流生态系统保护。此外,它为可持续水电操作的能量 - 生态系统规定提供了战略性建议。本研究还强调了在分析水能 - 生态系统Nexus时考虑季节性流动放电可变性的重要性。

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