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首页> 外文期刊>The Journal of Applied Ecology >Prioritizing barrier removal to improve functional connectivity of rivers
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Prioritizing barrier removal to improve functional connectivity of rivers

机译:优先改善功能障碍清除连通性的河流

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摘要

1. Freshwater systems are severely impacted by connectivity reduction due to the construction of dams and weirs. The breach of this longitudinal connectivity imperils freshwater fish species world-wide. There is thus an increasing need for numerical tools that help decisionmakers correctly allocate resources to prioritize restoration actions. 2. This study provides a methodology for prioritizing the removal of barriers. It is based on spatial graphs, which represent structural units as nodes and relationships between nodes as links, and uses habitat suitability modelling (Boosted Regression Trees) to weight nodes. To exemplify the application of this procedure, we used the Tagus River network and evaluated the impact of the dams (29 built between 1928 and 2004) on the occurrence of each of two fish species (Iberian barbel Luciobarbus bocagei – representing large potamodromous fish; and southern Iberian chub Squalius pyrenaicus – representing small water-column residents) and on the combination of both. 3. Results show that dam construction on the Tagus was responsible for a 48·4–54·4% reduction in river connectivity for different fish species. Actions to promote connectivity in just seven of the dams would increase connectivity by 35·0–37·2%. 4. The removal of a single barrier chosen through prioritization had a greater overall connectivity increase than the random removal of seven barriers. 5. Synthesis and applications. The proposed prioritization method, using spatial graphs and habitat suitability modelling, makes it possible to model the impact of the removal or placement of an insurmountable barrier on the overall functional connectivity of a river network, facilitating resource allocation and minimizing the impact of new barrier implementation.
机译:1. 由于建设连接减少大坝和堰。连通性危及淡水鱼类世界各地。数字工具,可以帮助决策者正确地分配资源优先恢复操作。方法优先考虑的障碍。代表结构节点和单元节点之间的关系链接,并使用栖息地适宜性模型(提高了回归节点树)体重。应用程序的过程中,我们使用的塔霍河河流网络和评估的影响大坝(29日建在1928年和2004年之间)发生的两个鱼类(伊比利亚触须Luciobarbus bocagei——代表大potamodromous鱼;潜居民)的组合两者都有。塔霍河负责48·4-54·4%减少河流连接为不同鱼类。7的大坝将会增加连接到35·0-37·2%。单一障碍选择通过优先级更大的整体连通性增加比随机删除7壁垒。和应用程序。方法,使用空间图形和栖息地适应性模型,使模型成为可能移除或放置的影响不可逾越的障碍的整体功能河流网络的连接,方便资源分配和减少的影响实现新障碍。

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