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首页> 外文期刊>Water Research >River restoration is prone to failure unless pre-optimized within a mechanistic ecological framework | Insights from a model-based case study
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River restoration is prone to failure unless pre-optimized within a mechanistic ecological framework | Insights from a model-based case study

机译:除非在机械生态学框架内预先优化,否则河流恢复很容易失败。来自基于模型的案例研究的见解

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摘要

River restoration with the use of in-stream structures has been widely implemented to maintain/improve physical habitats. However, the response of aquatic biota has often been too weak to justify the high costs of restoration projects. The ecological effectiveness of river restoration has thus been much debated over claims that large-scale environmental drivers often overshadow the potential positive ecological effects of locally placed in-stream structures. In this study, we used a two-dimensional hydrodynamic-habitat model to evaluate the ecological effectiveness of habitat restoration with the use of in-stream structures in various water discharges, ranging from near-dry to environmental flows. The habitat suitability of benthic macroinvertebrates and of three cyprinid fish species was simulated for six restoration schemes and at four discharge scenarios, and was compared with a reference model, without in-stream structures. We found that the ecological response to habitat restoration varied by species and life stages, it strongly depended on the reach-scale flow conditions, it was often negative at near-environmental flows, and when positive, mostly at near-dry flows, it was too low to justify the high costs of river restoration. Flow variation was the major environmental driver that our local habitat restoration schemes attempted -but mostly failed-to fine-tune. We conclude that traditional river restoration, based on trial and error, will likely fail and should be ecologically pre-optimized before field implementation. Widespread use of instream structures for ecological restoration is not recommended. However, at near-dry flows, the response of all biotic elements except for macroinvertebrates, was positive. In combination with the small habitat-suitability differences observed among structure types and densities, we suggest that sparse/moderate in-stream structure placement can be used for cost-effective river restoration, but it will only be ecologically effective -thus justifying the high implementation costs-when linked to very specific purposes: (i) to conserve endangered species and (ii) to increase/improve habitat availability/suitability during dry periods, thus proactively preventing/reducing the current and future ecological impacts of climate change. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用河床结构进行河流修复已得到广泛实施,以维护/改善自然栖息地。但是,水生生物的反应通常太弱,无法证明修复项目的高昂成本。因此,人们对河道恢复的生态有效性进行了广泛的争论,而有观点认为,大规模的环境驱动因素常常掩盖了本地河床结构潜在的积极生态影响。在这项研究中,我们使用了二维水动力-栖息地模型来评估栖息地恢复的生态有效性,其中包括从近干流到环境流的各种排水中的河床结构。对六个恢复方案和四个排放情景下的底栖大型无脊椎动物和三种鲤科鱼类的栖息地适应性进行了仿真,并与没有河流结构的参考模型进行了比较。我们发现,对生境恢复的生态响应随物种和生命阶段的不同而变化,它强烈取决于达到范围的流量条件,在近环境流量时通常为负,而在正面流量时(主要在近干燥时)则为负。太低而无法证明高昂的河流修复成本。流量变化是我们当地栖息地恢复计划尝试的主要环境驱动因素,但主要是无法进行微调。我们得出的结论是,基于反复试验的传统河道修复很可能会失败,应该在实地实施之前对其进行生态优化。不建议将河道结构广泛用于生态恢复。然而,在接近干燥的水流下,除大型无脊椎动物外,所有生物元素的反应均为阳性。结合在结构类型和密度之间观察到的较小的栖息地适宜性差异,我们建议稀疏/适度的河内结构布置可用于经济高效的河流恢复,但仅在生态上有效-因此有理由证明高水平实施与非常特定的目的相关的成本:(i)保护濒危物种,(ii)增加/改善干旱时期的栖息地可用性/适宜性,从而积极预防/减少气候变化当前和未来的生态影响。 (C)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2020年第15期|115550.1-115550.12|共12页
  • 作者

  • 作者单位

    Hellen Ctr Marine Res Inst Marine Biol Resources & Inland Waters 46-7 Km Athens Sounio Ave Anavyssos 19013 Greece|Natl Tech Univ Athens Dept Water Resources & Environm Engn 5 Iroon Polytech Str Athens 15780 Greece;

    Natl Tech Univ Athens Dept Water Resources & Environm Engn 5 Iroon Polytech Str Athens 15780 Greece;

    Hellen Ctr Marine Res Inst Marine Biol Resources & Inland Waters 46-7 Km Athens Sounio Ave Anavyssos 19013 Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquatic restoration; Habitat use; Habitat suitability; Droughts; Temporary rivers; Climate change;

    机译:水生恢复;栖息地使用;人居适宜性;干旱;临时河流;气候变化;

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