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Optimizing hydropower dam location and removal in the Sao Francisco river basin, Brazil to balance hydropower and river biodiversity tradeoffs

机译:圣弗朗西斯科河流域优化水电坝地点及拆迁,平衡水电和河流生物多样性权衡

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To support eco-friendly hydropower planning in developing regions, we propose a spatial optimization model for locating dams to balance tradeoffs between hydropower generation and migratory fish species richness. Our model incorporates two special features. First, it is tailored to the dispersal of tropical migratory fishes, which typically require long, unimpeded river stretches to complete their life-cycle. To model fish with this type of dispersal pattern, we introduce the concept of a river pathway, which represents a novel way to describe river connectivity. Second, it combines decisions about dam placement and removal, thus facilitating opportunities for hydropower offsetting. We apply our model to the Sao Francisco River basin, Brazil, an area of hydropower-freshwater biodiversity conflict. We find that dams have reduced weighted migratory fish richness 51% compared to a pre-dam baseline. We also find that even limited dam removal has the potential to significantly enhance fish biodiversity. Offsetting the removal of a single dam by the optimal siting of new dams could increase fish richness by 25% above the current average. Moving forward, optimizing new dam sites to increase hydropower by 20%, rather than selecting the fewest number of dams, could reduce fish species losses by 89%. If decisions about locating new dams are combined with dam removal, then a win-win can even be achieved with 20% greater hydropower and 19% higher species richness. Regardless of hydropower targets and dam removal options, a key observation is that optimal sites for dams are mostly located in the upper reaches of the basin rather than along the main stem of the Sao Francisco River or its main tributaries.
机译:为支持发展中区的环保水电规划,我们提出了一种空间优化模型,用于定位水电站与迁移鱼类丰富的平衡权衡。我们的型号包含两个特殊功能。首先,它量身定制于热带迁徙鱼类的分散,通常需要长期无阻碍的河流,以完成其生命周期。用这种类型的分散模式模拟鱼类,我们介绍了一条河道的概念,这代表了一种描述河流连接的新方法。其次,它结合了关于大坝放置和移除的决定,从而促进了水电偏移的机会。我们将我们的型号应用于巴西的Sao Francisco River Boutin,这是一个水电 - 淡水生物多样性冲突。我们发现,与坝前基线相比,大坝减少了加权迁移鱼丰富51%。我们还发现,即使有限的坝拆除也有可能显着增强鱼类生物多样性。抵消了通过新坝的最佳选址去除单个大坝可以将鱼质丰富的鱼类增加25%以上的电流平均值。向前迈进,优化新大坝网站,以增加水电20%,而不是选择最少的水坝,可以将鱼类损失降低89%。如果关于定位新大坝的决定与坝拆卸相结合,那么双赢甚至可以获得20%的水电和19%的物种丰富性。无论水电目标和坝移除选项如何,一个关键观察是水坝的最佳场所主要位于盆地的上游而不是沿着圣经弗朗西斯科河或其主要支流的主干。

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