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Test of an environmental flow release in a British Columbia river: does more water mean more fish?

机译:在不列颠哥伦比亚省河流中释放环境流量的测试:更多的水意味着更多的鱼类吗?

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1. Water managers must make difficult decisions about the allocation of streamflows between out-of-channel human uses and environmental flows for aquatic resources. However, the effects environmental flows on stream ecosystems are infrequently evaluated.2. We used a 13-year experiment in the regulated Bridge River, British Columbia, Canada, to determine whether an environmental flow release designed to increase salmonid productivity was successful. A hierarchical Bayesian model was used to compare juvenile Pacific salmon (Oncorhynchus spp.) abundance before and after the flow release.3. We found that the total number of salmonids did increase after the release, but most of the gains could be attributed to the rewatering of a previously dry channel located immediately below the dam. In reaches that had flowing water during the baseline period, the response of individual salmon species to the increase in flow was variable, and there was little change in total abundance after the flow release. Our results were inconsistent with both habitat modelling, which predicted a decrease in habitat quality with increasing flow, and holistic instream flow approaches, which imply greater benefits with larger flows.4. We question whether biotic responses to flow changes can be predicted reliably with currently available methods and suggest that adaptive management or the use of decision tools that account for the uncertainty in the biotic response is required for instream flow decisions when the competing demands for water are great.
机译:1.水管理者必须做出艰难的决定,以解决河道外人类使用与水生资源环境流量之间的流量分配问题。然而,很少评估环境流量对河流生态系统的影响。2。我们在加拿大不列颠哥伦比亚省受管制的布里奇河进行了为期13年的实验,以确定旨在提高鲑鱼生产力的环境流量释放是否成功。用分层贝叶斯模型比较了放流前后的太平洋幼鲑(Oncorhynchus spp。)的丰度。3。我们发现,鲑鱼的总数在释放后确实增加了,但是大部分收益可以归因于对位于大坝正下方的先前干燥的河道的补水。在基线期有水流的河段,鲑鱼个体对水流增加的响应是可变的,水流释放后总丰度几乎没有变化。我们的研究结果与生境建模(预测生境质量随流量增加而降低)和整体入溪流方法(表明流量增加带来的更大收益)不一致。4。我们质疑是否可以使用当前可用的方法可靠地预测对流量变化的生物响应,并建议在竞争激烈的水需求很大时,需要自适应管理或使用决策工具来解决生物响应中的不确定性。

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