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Impact of water development on river flows and the catch of a commercial marine fishery

机译:水开发对河流流动的影响及商业海洋渔业的捕获量

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The growing demand for freshwater resources has led to dam construction and water diversions in a majority of the world's large rivers. With an increasing demand for freshwater, trade‐offs between water allocations and the preservation of ecological connections between terrestrial and marine ecosystems are inevitable. The ecological links formed by rivers flowing into the ocean benefit many commercially fished species. The degree to which different species and the livelihoods of fishers are negatively impacted by changes in river flows due to water extraction or diversion is important for management across terrestrial and marine boundaries. Our objective was to predict how changes in freshwater flows from three wet–dry tropical rivers in northern Australia, that is, the Mitchell, Gilbert, and Flinders rivers, affect the commercial banana prawn (Penaeus merguiensis ) catch. We used a novel spatiotemporal Bayesian approach to model the effects of river flows and key climate drivers on banana prawn catch. We then predicted how the loss of flow due to water extraction or diversion affected prawn catch. Our analyses of three water development scenarios found that catch was most impacted by water extraction during low flows. The impact of water extraction was greatest for a scenario with dams on the Mitchell River, where we predicted catch would decline by 53% during a year with low flow. Overall, our results imply that maintenance of low‐level flows is a crucial requirement for sustained fishery yields. We suggest that water managers must balance agricultural demand for water during drier years against the impact of water extraction on prawn fisheries during low‐flow years. Protecting low‐level flows during drier years is a priority for maintaining terrestrial–marine linkages for adjacent marine fisheries.
机译:对淡水资源的需求不断增长导致大部分世界大型河流的大坝建设和水分流。随着对淡水的需求日益增长,水分分配之间的权衡和陆地和海洋生态系统之间的生态联系是不可避免的。流入海洋的河流形成的生态环节有利于许多商业捕捞的物种。不同物种和渔民生命的程度受到由于水提取或转移导致的河流流动的对策对管理层跨越陆地和海洋边界的影响。我们的目标是预测澳大利亚北部三个湿干热带河流的淡水流动变化,即米切尔,吉尔伯特和弗林德斯河流,影响商业香蕉虾( Penaeus merguiensis)捕获。我们使用了一种新的时空贝叶斯探净方法来模拟河流流动和柔美气候司机对香蕉大虾捕获的影响。然后,我们预测了由于水提取或转移受影响的流量损失。我们对三种水开发方案的分析发现,在低流动期间,捕获量受到水提取的影响最大。对于米切尔河上的水坝的场景,水提取的影响最大,我们预测的捕获量将在一年内下降53%,流量低。总体而言,我们的结果意味着低水平流量的维护是持续渔业产量的关键要求。我们建议水管理人员必须在干燥年内平衡农业需求,以防止在低流量年份对大虾渔业的影响。在更达到倾向者年期间保护低级流动是维护邻近海洋渔业的地面海洋联系的优先事项。

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